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Kazakhstan: Reaching Out to Central Asian Neighbours

4 December 2019

Annette Bohr

Associate Fellow, Russia and Eurasia Programme
Despite its regional outreach, Kazakhstan’s diplomatic priority will remain Russia, China, and Europe.

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Kazakhstan's President Kassym-Jomart Tokayev, Kazakh Majilis Chairman Nurlan Nigmatulin and ex-president Nursultan Nazarbayev at an inauguration ceremony in parliament. Photo: Pavel AleksandrovTASS via Getty Images.

Leaders of the resource-rich Central Asian region have the propensity to remain in power until mortality dictates otherwise. Much like the UK and Brexit, however, few wanted to see Central Asia’s longest reigning ruler, Kazakhstan’s septuagenarian president Nursultan Nazarbayev, crash out without a deal.

The sudden departure of the country’s official leader of the nation with no clear succession plan could have led to investment chaos, intra-elite fighting and the unravelling in a matter of months of a system he had built over decades, à la Uzbekistan following the death of long-serving autocrat Islam Karimov in 2016.

In order to avoid just such a ‘no-deal’ scenario and ensure the continuity of his policies, in March Nazarbayev carefully choreographed his own resignation and the election of a hand-picked successor, President Kassym-Jomart Tokayev, while retaining plum positions and powers for himself.

Tokayev’s assumption of the presidency was accompanied by protesters in the streets, increasing wealth inequality, rising Sinophobia among rank-and-file Kazakhstanis, a hard-to-kick economic dependence on oil revenues and a lack of clarity as to which leader—the old or the new president—would actually be calling the shots. But, amidst this plethora of concerns, as argued in a recent Chatham House report, Kazakhstan: Tested by Transition, one bright spot has been the tangible growth of intra-Central Asian cooperation, with the Nazarbayev-Tokayev ruling duo appearing eager to improve the regional dialogue.

Kazakhstan has long shaped its identity as a Eurasian state that has acted as more of an intermediary between Russia and Central Asia than as an integral part of the Central Asian region. But since 2017, in particular, Kazakhstan has been increasingly looking for opportunities to boost hitherto weak cooperation with its Central Asian neighbours. While this is first and foremost owing to the liberalization of Uzbekistan’s large market, there are other factors at work that get less airplay.

One such factor is a perceptible disentangling from the Kremlin’s policy directions as Kazakhstan has come to view Russia’s foreign policy as increasingly neo-colonial. The example of the Russia-led Eurasian Economic Union is in many respects more off-putting than inspiring, and Nur-Sultan does not want to be locked tightly into the union’s economic orbit. And in distancing itself slightly from Moscow in order to limit Russian leverage in its affairs, Nur-Sultan has shown itself to be more open to Central Asian regional initiatives.

As part of the leadership’s plan to offset oil dependence, Kazakhstan aspires to become the transport, telecommunications and investment hub for Eurasian integration. The intense focus on connectivity and the development of logistical arteries and infrastructure could have the knock-on effect of boosting trade within the Central Asian region and reducing transit times, which are currently greater than in most other parts of the globe.

In addition, demographic trends and educational shifts that favour ethnic Kazakhs, together with a growing ethno-nationalist narrative, have allowed the state’s leadership to identify more closely with Kazakhstan’s common Central Asian heritage and, by extension, a common Central Asian region—although Kazakhstan’s leadership still remains eager to demonstrate that the country is not just another ‘stan’. The coming to power of President Mirziyoyev in Uzbekistan appears to have made Kazakhstan more aware of the interconnectedness of the two countries in terms of geographical location and potential economic complementarities, as well as culture and history.

Not least, there is a growing recognition among the Central Asian states themselves—including isolationist Turkmenistan to a degree—that deepening regional trade is mutually beneficial, especially given the constraints associated with Russia’s economic problems. The strengthening of Kazakhstan’s ties with Uzbekistan has slowly kick-started regional cooperation as a whole: trade turnover between the Central Asian states in 2018 grew by 35 per cent on the previous year.

But both Kazakhstan and Uzbekistan are keen to stress that there is no discussion of integration or institutionalization, not least because previous attempts at integration have been overtaken by Russia, leaving Central Asia without its own coordinating body.

The official consensus in Kazakhstan is that Uzbekistan’s economic reforms after years of isolation will spur ‘a healthy rivalry’ and ultimately boost Kazakhstan’s own economy, in so far as the competition for foreign investment will require both countries to work harder to improve their respective business and regulatory environments.

At the unofficial level, however, some Kazakhstani analysts view Uzbekistan’s rise as potentially unprofitable, given the possible diversion of some investments and market activity from Kazakhstan to Uzbekistan. Moreover, Uzbekistan has the advantage of having undergone a clear change of executive, while it remains unclear which developments await Kazakhstan once First President Nazarbayev leaves the scene for good.

It can certainly be argued that Uzbekistan does pose a potential threat in the long-term to Kazakhstan’s entrenched position as Central Asia’s economic powerhouse: Uzbekistan’s population is one-and-a-half times bigger, even if its nominal GDP is three times smaller. Uzbekistan has a bigger market and a well-developed industrial sector, and is already the regional leader in terms of security. But it is not as though the world’s interest is moving from Kazakhstan to Uzbekistan; rather, Uzbekistan is in the process of trying to catch up.

Despite this relatively upbeat picture, Kazakhstan’s combined trade with the other Central Asian states accounts for less than 5 per cent of its total volume of foreign trade—a figure that cannot begin to equal its trade with Russia, China, and Europe. As a result, Kazakhstan will continue to give greater importance to positioning itself as a global player than as a regional leader.

This article was originally published in The Diplomat.




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How Putin Tries to Depoliticize Russia’s Youth

7 January 2020

Professor Nikolai Petrov

Senior Research Fellow, Russia and Eurasia Programme, Chatham House

Ekaterina Aleynikova

Independent Analyst
Vladimir Putin’s condescending remarks on Greta Thunberg’s activism say more about the Kremlin’s attitude towards Russian youth than climate change.

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Vladimir Putin meets with representatives of the Russian Student Brigades in the Kremlin. Photo: Getty Images.

Climate change debates have not taken root in Russia. Yet, while speaking at an energy forum in Moscow, Vladimir Putin chose to comment on Greta Thunberg, the prominent 16-year-old Swedish eco-activist. Adopting his usual sarcastically condescending persona, Putin expressed regret that the ‘kind’ and ‘very sincere’ girl was being used by adults for their own political interests in such a ‘cruel, emotional way’.

These remarks may appear to have been intended to dismiss Thunberg’s environmental concerns. However, among the Russian public, concern about climate change is not widespread.

Fridays for Future, the movement started by Thunberg, received little uptake in Russia, inspiring less than 100 people to take to the streets in September. This does not compare to the 50,000 or more people who came out to protest unfair elections and police brutality in Moscow in August. Indeed, Thunberg herself is largely perceived negatively among the Russian public.

Thus, there was no need for Putin to warn his domestic audience about Thunberg’s ‘mistaken’ cause. In fact, Putin’s key message was not to aimed at the young activist or even the climate change debate. Although presented as spontaneous, his words revealed a carefully-constructed narrative. It was expressed in general terms.

‘Adults must do everything not to bring teenagers and children into extreme situations,’ Putin urged, ‘when somebody uses children and teenagers in their own interests, it only deserves to be condemned.’ In fact, these statements were targeted at delegitimizing any sort of political engagement from young people.

Those familiar with Kremlin propaganda would have recognized this narrative from the statements that have been made about Alexey Navalny’s supporters over the recent years, who have been portrayed as ‘naïve’ and ‘manipulated’. According to the state, young people should be apolitical, and hence any involvement they have in politics must come as a result of manipulation by ‘ill-intended’ adults.

The same attitude is exploited to impose restrictions on individual freedoms, as is the case with the infamous gay propaganda law, which disguises discrimination in the language of protecting children. Portraying the youth as innately dependent legitimizes paternalistic interventions from the state, defining the norms of conduct.

This narrative is part of a wider strategy employed by the Russian government to promote political apathy among the country’s youth. There have been efforts to discourage young people from participating in political protests, such as warnings of expulsion at schools and universities and threats of fines and prosecution against parents whose children attend demonstrations.

A vivid illustration of these efforts is the recent conviction of Yegor Zhukov, a 21-year-old student from Moscow’s Higher School of Economics who discussed regime change on his blog. Instead of the four years in prison for extremism that the prosecutor asked for, he was sentenced to three years of probation, with a prohibition against him posting online as a condition. His sentencing sends a message, to Zhukov and to all young people interested in politics – he is free to go perhaps, but not free to speak out.

It is not all ‘stick’ in the government’s approach to young people. There is also some ‘carrot’. The Kremlin has been paying close attention to the youth ever since the protests of 2011–12, which demonstrated conclusively that growing up under Putin has not prevented young people from imagining alternatives to his regime. Since then, Putin has made a habit of regular meetings with young people, and a number of initiatives have been rolled out to select and reward ‘top performers’.

Through presidential grants, such as the Sirius educational programme in Sochi, the government selects and trains high-achieving students in STEM subjects. This is done under the umbrella of promoting technological innovation.

Thus, there exist clear boundaries over where creative thinking is allowed: it is encouraged in technical sciences, but not in social sciences or humanities. To the ‘right’ type of talented children participating in government programmes, the ‘wrong’ image of Zhukov stands as a stark contrast.

For the majority of young people, Russia’s education system does not support the development of independent, critical thinking. In 2016, Putin personally endorsed an initiative to create a single official history textbook that excludes ‘internal contradictions and double interpretations’. This demonstrates the desire of the regime to promote convergent thinking among the wider population.

This strategy towards Russia’s youth reflects the fears of Putin’s regime, which sees young people as having disruptive potential. There have been false dawns for Russia’s liberal opposition before (most recently in 2012) and, while the summer’s protests were significant, it remains unclear whether the new generation really are more progressive than those who went before.

Nevertheless, dissatisfaction with the status quo is apparent among Russia’s youth. They do not see Russia offering them good opportunities. Over 50% of those aged 18–24 reported that they want to emigrate, in a recent survey by Levada Center. Whether this discontent provides the impetus for political change in Russia may depend on the success of the Kremlin’s efforts to depoliticize Russia’s youth.




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Could Zelenskyy’s Strategy for Donbas Lead Ukraine Into a Kremlin Trap?

14 February 2020

Kataryna Wolczuk

Associate Fellow, Russia and Eurasia Programme

Hanna Shelest

Member of the Board, Foreign Policy Council 'Ukrainian Prism'
In pursuit of peace in the war-torn region, the Ukrainian president’s short-term, tactical approach is vulnerable in the face of Russia’s long-term strategy.

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Volodymyr Zelenskyy attends a ceremony welcoming Ukrainians who were freed by pro-Russian rebels during a prisoner exchange. Photo: Getty Images.

One of the key messages at the heart of Volodymyr Zelenskyy’s presidential campaign in 2019 was a very simple one: peace in Donbas, the war-torn region of Ukraine where Russian-supported separatists continue to fight a war against the Kyiv government. Zelenskyy’s message was based on the assumption that if a ceasefire could be respected, and all Ukrainian prisoners-of-war could return home, then peace would have been achieved.

Nine months after Zelenskyy’s inauguration and two months after his first Normandy Four summit (which brings together Germany and France with Ukraine and Russia to discuss Donbas), it appears more likely that this approach will lead Ukraine into a Russian trap.

Zelenskyy’s very immediate objectives and the tactics used to achieve them contrast with those of the previous president, Petro Poroshenko. Zelenskyy has pointedly avoided naming Russia as an aggressor and has focused on humanitarian issues and seeking compromise wherever possible, including in legal cases that Russia has already lost in international courts.

In contrast, President Poroshenko prioritised the security agenda as a precondition for any political settlement, encapsulated in the notion of ‘no elections without security guarantees’. This focused on regaining control of the border and the demilitarization of the separatist-controlled territories. At the same time, Poroshenko sought remedial action for Russian aggression through international courts. 

Kyiv is testing the Kremlin’s real intentions with a series of small steps without clearly communicating its overarching objectives. This has triggered considerable social disquiet, manifested by demonstrations in Kyiv and other cities as part of the ’No capitulation’ campaign. This wave of criticism forced Zelenskyy’s team to name certain red lines, which he promised he would not cross (‘we don’t trade territories and people’) in pursuit of conflict resolution.

Other key issues, such as Ukraine’s relations with the EU, future NATO membership, language issues and any possible ‘special status’ for Donbas, have been left undefined.

Two months since the Normandy summit, the number of casualties has not declined. It is increasingly difficult for Zelenskyy to argue that disengagement by Ukraine’s army from the contact line in three locations, which was a precondition for the December Normandy Four meeting, is a way to achieve peace.

The separatists continue to significantly impede the OSCE’s special monitoring mission, a full ceasefire is not being observed and there are numerous reports of heavy weapons movements closer to the contact line in the areas outside Kyiv’s control. These issues are particularly problematic as control over the border with Russia is essential for the demilitarization of the ‘people’s republics’, which is a prerequisite for the safe reintegration of these areas.

Conducting local elections in autumn 2020 is a top priority for the new team, but it is clear that even if Ukraine regains control of its border, the presence of Russian military personnel and weaponry in Donbas threatens the prospect of free and fair elections (which themselves raise the further issue of how to ensure the integrity of the votes).

Russia’s strategy

So despite Zelenskyy’s pacifist rhetoric, hopes and ambitions, his plans are far from being realized or, in fact, realizable. This is because these plans are at odds with Russia’s strategic objective, which is for Donbas to be conferred a status whereby it is de jure within Ukraine but de facto under Russian control and influence.

Zelenskyy’s media-friendly appearance in Paris in December 2019 could not mask the fact that the Normandy Four talks exposed the weakness of Ukraine’s position and the growing influence of Russia’s approach, particularly in the context of a disengaged UK and US, a Germany increasingly tired of this conflict, and a French president who is looking to accommodate Russian preferences.

Indeed, Vladimir Putin was able to exploit the opportunity to apply his favoured formula for conducting foreign policy: highly personalized informal interactions, which seek specific political concessions from a cornered partner and which are short on transparent, stable and law-based solutions. The Paris meeting of the Normandy Four in December 2019 clearly demonstrated that simply sitting down and talking to Putin is not a magic pill to end the conflict, an idea frequently expressed by Zelenskyy.

In 2020, the strongest clue as to what Putin’s plans for Ukraine might be is the appointment of Dmitry Kozak as the main curator of the ‘Ukraine file’ (meaning Donbas and Crimea), replacing Vladislav Surkov, his long-time competitor for the role. The next Normandy meeting is expected in April 2020, and Kyiv should be aware of the possible pitfalls.

While Kozak is perceived by some as a more pragmatic and less aggressive counterpart, his past tells a different story. In fact, he was the architect of the long-term strategy for Moldova, which centred on the federalization of Moldova and the reincorporation of the separatist region of Transnistria into Moldova.

The presence of Russian military forces stationed on the ground there amounts to ‘armed suasion’ – using a military presence to demand political concessions from Moldova. The so-called ‘Kozak memorandum’ – which de facto re-writes the constitution of Moldova – contains a detailed explanation of that strategy.

Kozak could try to deliver a similar situation for Ukraine. Less emphasis is being put on specific terms (federalization vs. special status) but the overarching aims are unchanged since 2014, in the same way they have been in Moldova since 2003. Kozak is a man who can play the long game, while the team of the Ukrainian president chases quick successes without calculating long-term risks. This could be a dangerous combination.

The ‘human-centric approach’ to resolving the conflict followed by President Zelenskyy is a double-edged sword. The focuses on humanitarian issues and readiness for big compromises are clear positive signals to Western partners and supporters of Zelenskyy’s Servant of the People party. But prioritizing humanitarian issues over national security considerations could easily lead Ukraine into a Russian trap, which does not so much rely on a massive military assault but envisages creeping control over Ukraine’s future as its ultimate goal.




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Lukashenka’s Commitment to Belarusian Sovereignty Is Overstated

18 February 2020

Ryhor Astapenia

Robert Bosch Stiftung Academy Fellow, Russia and Eurasia Programme
Although President Lukashenka has recently shown assertiveness in relations with Russia, overall he has done very little to ensure his country’s freedom of action.

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Putin and Lukashenka play ice hockey in Sochi after a day of talks in February. Photo: Getty Images.

Earlier this month, US Secretary of State Mike Pompeo became the highest-ranking US official to visit Belarus since Bill Clinton in 1994. After meetings with Belarusian President Alexander Lukashenka – who Condoleezza Rice once memorably described as ‘Europe’s last dictator’ – Pompeo said he was ‘optimistic about our strengthened relationship’. 

The EU and its member states have also changed their tune, at least a little. Previously, prosecutions of democratic activists led to sanctions against the Lukashenka regime. But his less-than-liberal manner of governance did not prevent him from visiting Austria last November or from receiving invitations to Brussels. 

Eight years ago, most EU contacts with Belarusian officials were frozen. Now, Western diplomats regularly meet with Belarusian officials again. This year, a US ambassador to Belarus will be appointed after a 12-year break.

The West is also more willing to support Belarus financially. The European Bank for Reconstruction and Development invested a record-breaking $433 million in the country in 2019. The European Investment Bank only began working with the country in 2017 but already has a portfolio of $600 million.

Certain policymakers in the EU and US now, at least publicly, appear to regard Lukashenka as one of the sources of regional security and a defender of Belarusian sovereignty against Russia.

There is some truth in this. He has taken a neutral position in Russia’s conflict with Ukraine, and he has consistently resisted pressure from the Kremlin to establish a military base in Belarus.

Now, amid Moscow’s demands for deeper integration in exchange for the continuation of Russian energy subsidies, Lukashenka has shown reluctance to sell his autonomy. In a token attempt to portray sovereignty Belarus even started buying oil from Norway, although this makes no economic sense.

But Lukashenka’s long-term record shows he has done little to ensure the country’s sovereignty. Lukashenka has resisted reforms that would have strengthened the economy (because they would have weakened his own position). The political system is also dependent on Russia because Lukashenka has been unwilling to build better relations with the West. Belarusians are still strongly influenced by Russian culture and media because the authorities marginalize their own national identity.

Since the conflict in Ukraine in 2014, Lukashenka’s primary goal has not been to strengthen the sovereignty of Belarus, but to preserve his absolute control over the country.

For example, when in 2018 Russia started pressing Belarus to deepen its integration in order to retain economic support, Minsk did not reject this approach outright; instead, it discussed no less than 31 ‘road maps’ for deepening integration for more than a year, hoping to receive more benefits. For Lukashenka, greater dependency on Russia is a matter of price and conditions, not principle. 

None of this is to say Belarus has illusions about Russia. It is just that Lukashenka does not take long-term steps to protect the country’s sovereignty or to strengthen relations with the West.

Belarus needs to start economic reform with the support of the International Monetary Fund, but this cannot happen without Lukashenka’s genuine commitment to transform the economy. Absence of cross-sectoral reform has led to the deterioration of the education system as well as unprecedented emigration. Few Belarusian experts are optimistic about their country’s future. Lukashenka knows all this, but does not change his system, fearing it would damage the stability of his regime.  

The West should therefore adopt a broader policy. Lukashenka is unlikely to still be president in 10–15 years, so policymakers should develop relations with the broader ruling elite, which will remain after he leaves, and try to be present in Belarus as much as possible helping it to improve public governance and develop private businesses.

The West should also support the country’s civil society and independent media, for whom Belarusian independence is a matter of principle rather than something to be bargained away.

Lukashenka may be a strong leader, but the state he has built is weak.




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In a COVID-19 World, Russia Sticks to International Distancing

29 March 2020

Mathieu Boulègue

Research Fellow, Russia and Eurasia Programme
While a global response is needed against the coronavirus crisis, Russia does not see it as in its interests to contribute – and in fact the Kremlin is using the crisis to further destabilise the world.

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Young woman wearing a face mask in front of St. Basil's Cathedral, Moscow. Photo by ALEXANDER NEMENOV/AFP via Getty Images.

Persistent internet rumours claiming the coronavirus outbreak originated from a secret American pharmaceutical company with the aim of destroying China from within were quickly discredited. Pop culture fans recognised the supposed activities of the Umbrella Corporation as being from the famous Japanese video games series Resident Evil.

However, although fake news, it can likely be attributed to Russian trolls conducting this and other similar activities online, especially when considered within the wider context of how the Russian regime is using this worldwide crisis to further destabilize the West and test its resolve.

Russian trolls never sleep

Russia’s COVID-19 related actions first and foremost take the form of a vast information warfare campaign, with media outlets simultaneously downplaying the threat of the pandemic - ‘it is less dangerous than seasonal flu’ - while stoking fear about what is happening elsewhere in Europe.

For the domestic audience in Russia, some media are reporting the pandemic marks the collapse of the Western world and liberalism altogether, calling it a form of collective punishment. Other point out how fast liberal democracies have curbed individual and entrepreneurial freedoms in order to slow down the viral outbreak, and seek to diminish the credibility of the Western response to the crisis.

Exploiting the coronavirus crisis in this way is a new low in Russia’s wider political warfare campaign to undermine global governance overall, as these activities are detrimental to people's very safety. For example, in Ukraine, it is thought a Russian-engineered disinformation operation may have caused the outburst of violence in the city of Novi Sanzhary following the arrival of evacuees from China.

In the military realm, fake news has been targeting the US-led multinational exercise DEFENDER-Europe 2020. The Russian leadership criticized the exercise as an offensive ‘anti-Russian scenario’ but then used accompanying propaganda that it could actively facilitate the spread of COVID-19 across Europe because of the arrival and movement of large numbers of troops.

The large-scale drills were planned to involve 18 participating nations and should have taken place across ten European countries from April to May 2020. But the exercise has now been scaled down – as has the Russian disinformation targeting it.

And while the world is pre-occupied with managing COVID-19, Moscow is able to grow bolder in its provocations. Recent air incursions were reported into Irish controlled airspace as well as over the North Sea. Although this practice is - unfortunately - routine as part of Russian constant military sabre-rattling, it does increase the risk of tactical errors and miscalculation.

Self-isolation, Kremlin style

Meanwhile, just when a global response is needed to fight the pandemic, Moscow’s response has been, at best, self-serving. On March 22, Russian military reportedly started sending medical equipment and supplies to Italy. While the nature and the scope of this assistance can be doubted, it still represents a charm offensive for Russia to be brought back in from the cold in Europe - since successive Italian leaderships have been accommodating to the Kremlin. And sending virologists to Italy might also be a useful learning curve for Russia’s regime.

But within Russia itself, Vladimir Putin does have to face the problem that, on top of all the projected social and healthcare costs, the coronavirus is also having negative political consequences. On March 25, the ‘popular vote’ - a mock referendum designed to rubber-stamp Putin’s recent constitutional changes - was pushed back. And the Ministry of Communications has been forced to postpone a major exercise aimed at ensuring the ‘stable and safe operation of Runet’ - namely eliminating vulnerabilities in the Russian ‘sovereign’ internet to potential external threats.

Certainly it would be naive to believe Moscow will put self-interest to one side during this pandemic. ‘International distancing’ is not new for the Kremlin, and Russia has been practising self-isolation since at least 2008 through its own actions, most notably in Georgia and Ukraine.

Its self-perception as a ‘besieged fortress’ is being reinforced by this crisis and Russia will, at the very least, likely come out of the crisis feeling vindicated in its view that internationalism is dying or already dead.

With the health systems of many countries under massive strain, and societal resilience being tested by social distancing, the Kremlin continues to probe for weaknesses, and is also carefully watching other countries’ responses to the crisis in terms of adaptation and mobilization of resources.

COVID-19 provides a major intelligence-gathering opportunity for Moscow to learn how well others can implement wartime-like planning in peacetime. In a rapidly changing world, Russia is still Russia.




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Can Ukraine’s Appeal to the International Courts Work?

3 April 2020

Kateryna Busol

Robert Bosch Stiftung Academy Fellow, Russia and Eurasia Programme
First in a two-part series analysing why Ukraine’s attempts at international justice are worth taking - and outlining how the impact goes far beyond just the Russia-Ukraine conflict. Part one examines the response of the International Court of Justice (ICJ) to the possibility of holding Russia accountable as a state.

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Rally in support of keeping Crimea as part of Ukraine. Photo by Spencer Platt/Getty Images.

Russia’s ongoing occupation of Ukraine’s Crimean peninsula and support of separatist hostilities in the eastern provinces of Donbas have resulted in 1.5 million internally displaced persons, 3,000 civilians killed, and a growing list of alleged violations of international law and socio-economic hardship.

But Ukraine is struggling in its efforts to hold Russia accountable – either as a state or through individual criminal responsibility - as it cannot unilaterally ask any international court to give an overall judgment on the conflict.

So it focuses on narrower issues, referring them to authorised adjudication and arbitration platforms such as the International Court of Justice (ICJ), European Court of Human Rights, UNCLOS arbitration, and the International Criminal Court (ICC). These options are limited, but still worth taking - and their relevance is proving to be far wider than the Russia-Ukraine conflict.

Policy of cultural eradication

In 2017, Ukraine initiated proceedings against Russia at the ICJ on the basis of two international treaties: the International Convention on the Elimination of All Forms of Racial Discrimination (CERD), with regard to Crimea; and the International Convention for the Suppression of the Financing of Terrorism (ICSFT), with regard to Donbas.

Under the CERD, Ukraine alleges Russia has carried out a policy of cultural eradication of ethnic Ukrainians and Crimean Tatars in Crimea, including enforced disappearances, no education in the Ukrainian and Crimean Tatar languages, and the ban of the Mejlis, the main representative body of the Crimean Tatars.

Under the ICSFT, Ukraine alleges Russia has supported terrorism by providing funds, weapons and training to illegal armed groups in eastern Ukraine. In particular Ukraine alleges Russian state responsibility - through its proxies - for downing the infamous MH17 flight.

Both these treaties are binding upon Ukraine and Russia and entitle an individual state party to refer a dispute concerning them to the ICJ, but certain procedural pre-conditions must first be exhausted. These include a failed attempt to settle a dispute either through negotiations or the CERD Committee (for the CERD) or unsuccessful negotiations and arbitration (for the ICSFT).

Russia challenged Ukraine’s compliance with the pre-conditions, but the ICJ disagreed with Russia’s submission that Ukraine had to resort both to negotiations and to the CERD Committee. For the first time, the court clarified these procedures under the CERD were two means to reach the same aim, and therefore alternative and not cumulative.

Requiring states to avail of both procedures before going to the ICJ would undermine the very purpose of the CERD to eliminate racial discrimination promptly, and ensure the availability of effective domestic protection and remedies.

The relevance of this clarification transcends the Ukraine-Russia dispute. With the rise of discriminatory practices, from populist hate-filled rhetoric endangering vulnerable communities to large-scale persecution such as that of the Rohingyas, the UN’s principal judicial body is sending a clear larger message to the world: such practices are unacceptable and must be dealt with expeditiously and efficiently. If states fail to do so, there are now fewer procedural impediments to do it internationally.

The ICJ also confirmed Ukraine had complied with both procedural preconditions under the ICSFT and that it would give judgement on the alleged failure of Russia to take measures to prevent the financing of terrorism. The outcome of this will be of great importance to the international community, given the general lack of international jurisprudence on issues of terrorism.

The court’s interpretation of knowledge and intent in terrorism financing, as well as clarification of the term ‘funds’, is particularly relevant both for the Ukraine-Russia case and for international law.

As the final judgement may take several years, the ICJ granted some provisional measures requested by Ukraine in April 2017. The court obliged Russia to ensure the availability of education in Ukrainian and enable the functioning of the Crimean Tatar representative institutions, including the Mejlis.

When Russia contested Ukraine’s references to the alleged Stalin-ordered deportation of the Crimean Tatars and the rule of law in the Soviet Union being hypocritical, by arguing that history did not matter, the court disagreed.

In fact, Judge James Crawford emphasised the relevance of the ‘historical persecution’ of Crimean Tatars and the role of Mejlis in advancing and protecting their rights in Crimea ‘at the time of disruption and change’.

These conclusions are important reminders that the historical inheritance of injustices inflicted on vulnerable groups should be taken into account when nations address their imperial legacies.

The court’s provisional measures and Judge Crawford’s position are particularly relevant in light of Russia’s policy of the total - territorial, historical, cultural – ‘russification’ of Crimea, as they highlight the role of the historical background for assessing the alleged discriminatory and prosecutorial policy of Russia’s occupying authorities against the Crimean Tatars.

The ICJ’s judgement on the merits of this as well as other human rights, and terrorism issues of Crimea and Donbas will be an important consideration for the international community in its view of the Russia-Ukraine armed conflict and the sanctions policy against Russia.

The development of this case also has a mutually catalysing impact on Ukraine’s efforts to establish those individually criminally responsible for atrocities in Crimea and Donbas, through domestic proceedings and through the International Criminal Court.

Ukraine’s attempts to seek individual criminal responsibility for gross abuses in Donbas and Crimea at the International Criminal Court (ICC) are assessed in part two of this series, coming soon.




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Victory and Memory: WW2 Narratives in Modern Day Russia and Ukraine

Invitation Only Research Event

11 May 2020 - 4:00pm to 5:30pm
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Nina Tumarkin, Kathryn Wasserman Davis Professor of Slavic Studies; Professor of History; Director, Russian Area Studies Program, Wellesley College
Georgiy Kasianov, Head, Department of Contemporary History and Politics, Institute of History of Ukraine, National Academy of Sciences of Ukraine
Chair: Robert Brinkley, Chairman, Steering Committee, Ukraine Forum, Chatham House
In 2020 the world commemorates the 75th anniversary of the end of World War II. The Russian government has organized a wide range of activities to mark the USSR’s victory, aiming to raise the already prominent role of the USSR to a new level. Moscow also uses its narrative about the war as a propaganda tool. Ukraine, which suffered disproportionally huge human losses and material destruction during WWII, is departing from its Soviet legacy by focusing commemorative efforts on honouring the victims of WWII rather than on glorifying victory. 
 
This event will analyze the evolution of the WWII narratives in Russia and Ukraine in recent years. The panellists will discuss the role of those narratives in shaping national discourses and their implications for the countries' respective futures.
 
This event will be held on the record.

Anna Morgan

Administrator, Ukraine Forum
+44 (0)20 7389 3274

Department/project




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Erratum: FTY720/fingolimod decreases hepatic steatosis and expression of fatty acid synthase in diet-induced nonalcoholic fatty liver disease in mice [Errata]




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Metallopeptidase Stp1 activates the transcription factor Sre1 in the carotenogenic yeast Xanthophyllomyces dendrorhous [Research Articles]

Xanthophyllomyces dendrorhous is a basidiomycete yeast known as a natural producer of astaxanthin, a carotenoid of commercial interest because of its antioxidant properties. Recent studies indicated that X. dendrorhous has a functional SREBP pathway involved in the regulation of isoprenoid compound biosynthesis, which includes ergosterol and carotenoids. SREBP is a major regulator of sterol metabolism and homeostasis in mammals; characterization in fungi also provides information about its role in the hypoxia adaptation response and virulence. SREBP protease processing is required to activate SREBP pathway functions in fungi. Here, we identified and described the STP1 gene, which encodes a metallopeptidase of the M50 family involved in the proteolytic activation of the transcription factor Sre1 of the SREBP pathway, in X. dendrorhous. We assessed STP1 function in stp1 strains derived from the wild-type and a mutant of ergosterol biosynthesis that overproduces carotenoids and sterols. Bioinformatic analysis of the deduced protein predicted the presence of characteristic features identified in homologs from mammals and fungi. The stp1 mutation decreased yeast growth in the presence of azole drugs and reduced transcript levels of Sre1-dependent genes. This mutation also negatively affected the carotenoid- and sterol-overproducing phenotype. Western blot analysis demonstrated that Sre1 was activated in the yeast ergosterol biosynthesis mutant and that the stp1 mutation introduced in this strain prevented Sre1 proteolytic activation. Overall, our results demonstrate that STP1 encodes a metallopeptidase involved in proteolytic activation of Sre1 in X. dendrorhous, contributing to our understanding of fungal SREBP pathways.




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Endocytosis of very low-density lipoproteins: an unexpected mechanism for lipid acquisition by breast cancer cells [Research Articles]

We previously described the expression of CD36 and LPL by breast cancer (BC) cells and tissues and the growth-promoting effect of VLDL observed only in the presence of LPL. We now report a model in which LPL is bound to a heparan sulfate proteoglycan motif on the BC cell surface and acts in concert with the VLDL receptor to internalize VLDLs via receptor-mediated endocytosis. We also demonstrate that gene-expression programs for lipid synthesis versus uptake respond robustly to triglyceride-rich lipoprotein availability. The literature emphasizes de novo FA synthesis and exogenous free FA uptake using CD36 as paramount mechanisms for lipid acquisition by cancer cells. We find that the uptake of intact lipoproteins is also an important mechanism for lipid acquisition and that the relative reliance on lipid synthesis versus uptake varies among BC cell lines and in response to VLDL availability. This metabolic plasticity has important implications for the development of therapies aimed at the lipid dependence of many types of cancer, in that the inhibition of FA synthesis may elicit compensatory upregulation of lipid uptake. Moreover, the mechanism that we have elucidated provides a direct connection between dietary fat and tumor biology.­.




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A nematode sterol C4{alpha}-methyltransferase catalyzes a new methylation reaction responsible for sterol diversity [Research Articles]

Primitive sterol evolution plays an important role in fossil record interpretation and offers potential therapeutic avenues for human disease resulting from nematode infections. Recognizing that C4-methyl stenol products [8(14)-lophenol] can be synthesized in bacteria while C4-methyl stanol products (dinosterol) can be synthesized in dinoflagellates and preserved as sterane biomarkers in ancient sedimentary rock is key to eukaryotic sterol evolution. In this regard, nematodes have been proposed to convert dietary cholesterol to 8(14)-lophenol by a secondary metabolism pathway that could involve sterol C4 methylation analogous to the C2 methylation of hopanoids (radicle-type mechanism) or C24 methylation of sterols (carbocation-type mechanism). Here, we characterized dichotomous cholesterol metabolic pathways in Caenorhabditis elegans that generate 3-oxo sterol intermediates in separate paths to lophanol (4-methyl stanol) and 8(14)-lophenol (4-methyl stenol). We uncovered alternate C3-sterol oxidation and 7 desaturation steps that regulate sterol flux from which branching metabolite networks arise, while lophanol/8(14)-lophenol formation is shown to be dependent on a sterol C4α-methyltransferse (4-SMT) that requires 3-oxo sterol substrates and catalyzes a newly discovered 3-keto-enol tautomerism mechanism linked to S-adenosyl-l-methionine-dependent methylation. Alignment-specific substrate-binding domains similarly conserved in 4-SMT and 24-SMT enzymes, despite minimal amino acid sequence identity, suggests divergence from a common, primordial ancestor in the evolution of methyl sterols. The combination of these results provides evolutionary leads to sterol diversity and points to cryptic C4-methyl steroidogenic pathways of targeted convergence that mediate lineage-specific adaptations.­­




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Lipid droplet-associated kinase STK25 regulates peroxisomal activity and metabolic stress response in steatotic liver [Research Articles]

Nonalcoholic fatty liver disease (NAFLD) and nonalcoholic steatohepatitis (NASH) are emerging as leading causes of liver disease worldwide and have been recognized as one of the major unmet medical needs of the 21st century. Our recent translational studies in mouse models, human cell lines, and well-characterized patient cohorts have identified serine/threonine kinase (STK)25 as a protein that coats intrahepatocellular lipid droplets (LDs) and critically regulates liver lipid homeostasis and progression of NAFLD/NASH. Here, we studied the mechanism-of-action of STK25 in steatotic liver by relative quantification of the hepatic LD-associated phosphoproteome from high-fat diet-fed Stk25 knockout mice compared with their wild-type littermates. We observed a total of 131 proteins and 60 phosphoproteins that were differentially represented in STK25-deficient livers. Most notably, a number of proteins involved in peroxisomal function, ubiquitination-mediated proteolysis, and antioxidant defense were coordinately regulated in Stk25–/– versus wild-type livers. We confirmed attenuated peroxisomal biogenesis and protection against oxidative and ER stress in STK25-deficient human liver cells, demonstrating the hepatocyte-autonomous manner of STK25’s action. In summary, our results suggest that regulation of peroxisomal function and metabolic stress response may be important molecular mechanisms by which STK25 controls the development and progression of NAFLD/NASH.




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Quantification of bile acids: a mass spectrometry platform for studying gut microbe connection to metabolic diseases [Research Articles]

Bile acids (BAs) serve multiple biological functions, ranging from the absorption of lipids and fat-soluble vitamins to serving as signaling molecules through the direct activation of dedicated cellular receptors. Synthesized by both host and microbial pathways, BAs are increasingly understood as participating in the regulation of numerous pathways relevant to metabolic diseases, including lipid and glucose metabolism, energy expenditure, and inflammation. Quantitative analyses of BAs in biological matrices can be problematic due to their unusual and diverse physicochemical properties, making optimization of a method that shows good accuracy, precision, efficiency of extraction, and minimized matrix effects across structurally distinct human and murine BAs challenging. Herein we develop and clinically validate a stable-isotope-dilution LC/MS/MS method for the quantitative analysis of numerous primary and secondary BAs in both human and mouse biological matrices. We also utilize this tool to investigate gut microbiota participation in the generation of structurally specific BAs in both humans and mice. We examine circulating levels of specific BAs and in a clinical case-control study of age- and gender-matched type 2 diabetes mellitus (T2DM) versus nondiabetics. BAs whose circulating levels are associated with T2DM include numerous 12α-hydroxyl BAs (taurocholic acid, taurodeoxycholic acid, glycodeoxycholic acid, deoxycholic acid, and 3-ketodeoxycholic acid), while taurohyodeoxycholic acid was negatively associated with diabetes. The LC/MS/MS-based platform described should serve as a robust, high-throughput investigative tool for studying the potential involvement of structurally specific BAs and the gut microbiome on both physiological and disease processes.




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Macrophage polarization is linked to Ca2+-independent phospholipase A2{beta}-derived lipids and cross-cell signaling in mice [Research Articles]

Phospholipases A2 (PLA2s) catalyze hydrolysis of the sn-2 substituent from glycerophospholipids to yield a free fatty acid (i.e., arachidonic acid), which can be metabolized to pro- or anti-inflammatory eicosanoids. Macrophages modulate inflammatory responses and are affected by Ca2+-independent phospholipase A2 (PLA2)β (iPLA2β). Here, we assessed the link between iPLA2β-derived lipids (iDLs) and macrophage polarization. Macrophages from WT and KO (iPLA2β–/–) mice were classically M1 pro-inflammatory phenotype activated or alternatively M2 anti-inflammatory phenotype activated, and eicosanoid production was determined by ultra-performance LC ESI-MS/MS. As a genotypic control, we performed similar analyses on macrophages from RIP.iPLA2β.Tg mice with selective iPLA2β overexpression in β-cells. Compared with WT, generation of select pro-inflammatory prostaglandins (PGs) was lower in iPLA2β–/–, and that of a specialized pro-resolving lipid mediator (SPM), resolvin D2, was higher; both changes are consistent with the M2 phenotype. Conversely, macrophages from RIP.iPLA2β.Tg mice exhibited an opposite landscape, one associated with the M1 phenotype: namely, increased production of pro-inflammatory eicosanoids (6-keto PGF1α, PGE2, leukotriene B4) and decreased ability to generate resolvin D2. These changes were not linked with secretory PLA2 or cytosolic PLA2α or with leakage of the transgene. Thus, we report previously unidentified links between select iPLA2β-derived eicosanoids, an SPM, and macrophage polarization. Importantly, our findings reveal for the first time that β-cell iPLA2β-derived signaling can predispose macrophage responses. These findings suggest that iDLs play critical roles in macrophage polarization, and we posit that they could be targeted therapeutically to counter inflammation-based disorders.




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Novel GPR120 agonist TUG891 modulates fat taste perception and preference and activates tongue-brain-gut axis in mice [Research Articles]

GPR120 is implicated as a lipid receptor in the oro-sensory detection of dietary fatty acids. However, the effects of GPR120 activation on dietary fat intake or obesity are not clearly understood. We investigated to determine whether the binding of TUG891, a novel GPR120 agonist, to lingual GPR120 modulates fat preference in mice. We explored the effects of TUG891 on obesity-related hormones and conducted behavioral choice tests on mice to better understand the physiologic relevance of the action of TUG891. In cultured mouse and human taste bud cells (TBCs), TUG891 induced a rapid increase in Ca2+ by acting on GPR120. A long-chain dietary fatty acid, linoleic acid (LA), also recruited Ca2+ via GPR120 in human and mouse TBCs. Both TUG891 and LA induced ERK1/2 phosphorylation and enhanced in vitro release of glucagon-like peptide-1 from cultured human and mouse TBCs. In situ application of TUG891 onto the tongue of anesthetized mice triggered the secretion of pancreatobiliary juice, probably via the tongue-brain-gut axis. Furthermore, lingual application of TUG891 altered circulating concentrations of cholecystokinin and adipokines, associated with decreased circulating LDL, in conscious mice. In behavioral tests, mice exhibited a spontaneous preference for solutions containing either TUG891 or LA instead of a control. However, addition of TUG891 to a solution containing LA significantly curtailed fatty acid preference. Our study demonstrates that TUG891 binds to lingual GPR120 receptors, activates the tongue-brain-gut axis, and modulates fat preference. These findings may support the development of new fat taste analogs that can change the approach to obesity prevention and treatment.




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Worming our way toward multiple evolutionary origins of convergent sterol pathways [Commentary]




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Nonsynonymous SNPs in LPA homologous to plasminogen deficiency mutants represent novel null apo(a) alleles [Patient-Oriented and Epidemiological Research]

Plasma lipoprotein (a) [Lp(a)] levels are largely determined by variation in the LPA gene, which codes for apo(a). Genome-wide association studies (GWASs) have identified nonsynonymous variants in LPA that associate with low Lp(a) levels, although their effect on apo(a) function is unknown. We investigated two such variants, R990Q and R1771C, which were present in four null Lp(a) individuals, for structural and functional effects. Sequence alignments showed the R990 and R1771 residues to be highly conserved and homologous to each other and to residues associated with plasminogen deficiency. Structural modeling showed both residues to make several polar contacts with neighboring residues that would be ablated on substitution. Recombinant expression of the WT and R1771C apo(a) in liver and kidney cells showed an abundance of an immature form for both apo(a) proteins. A mature form of apo(a) was only seen with the WT protein. Imaging of the recombinant apo(a) proteins in conjunction with markers of the secretory pathway indicated a poor transit of R1771C into the Golgi. Furthermore, the R1771C mutant displayed a glycosylation pattern consistent with ER, but not Golgi, glycosylation. We conclude that R1771 and the equivalent R990 residue facilitate correct folding of the apo(a) kringle structure and mutations at these positions prevent the proper folding required for full maturation and secretion. To our knowledge, this is the first example of nonsynonymous variants in LPA being causative of a null Lp(a) phenotype.




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Exon 9-deleted CETP inhibits full length-CETP synthesis and promotes cellular triglyceride storage [Research Articles]

Cholesteryl ester transfer protein (CETP) exists as full-length (FL) and exon 9 (E9)-deleted isoforms. The function of E9-deleted CETP is poorly understood. Here, we investigated the role of E9-deleted CETP in regulating the secretion of FL-CETP by cells and explored its possible role in intracellular lipid metabolism. CETP overexpression in cells that naturally express CETP confirmed that E9-deleted CETP is not secreted, and showed that cellular FL- and E9-deleted CETP form an isolatable complex. Coexpression of CETP isoforms lowered cellular levels of both proteins and impaired FL-CETP secretion. These effects were due to reduced synthesis of both isoforms; however, the predominate consequence of FL- and E9-deleted CETP coexpression is impaired FL-CETP synthesis. We reported previously that reducing both CETP isoforms or overexpressing FL-CETP impairs cellular triglyceride (TG) storage. To investigate this further, E9-deleted CETP was expressed in SW872 cells that naturally synthesize CETP and in mouse 3T3-L1 cells that do not. E9-deleted CETP overexpression stimulated SW872 triglyceride synthesis and increased stored TG 2-fold. Expression of E9-deleted CETP in mouse 3T3-L1 cells produced a similar lipid phenotype. In vitro, FL-CETP promotes the transfer of TG from ER-enriched membranes to lipid droplets. E9-deleted CETP also promoted this transfer, although less effectively, and it inhibited the transfer driven by FL-CETP. We conclude that FL- and E9-deleted CETP isoforms interact to mutually decrease their intracellular levels and impair FL-CETP secretion by reducing CETP biosynthesis. E9-deleted CETP, like FL-CETP, alters cellular TG metabolism and storage but in a contrary manner.




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Deficiency in ZMPSTE24 and resulting farnesyl-prelamin A accumulation only modestly affect mouse adipose tissue stores [Research Articles]

Zinc metallopeptidase STE24 (ZMPSTE24) is essential for the conversion of farnesyl–prelamin A to mature lamin A, a key component of the nuclear lamina. In the absence of ZMPSTE24, farnesyl–prelamin A accumulates in the nucleus and exerts toxicity, causing a variety of disease phenotypes. By ~4 months of age, both male and female Zmpste24–/– mice manifest a near-complete loss of adipose tissue, but it has never been clear whether this phenotype is a direct consequence of farnesyl–prelamin A toxicity in adipocytes. To address this question, we generated a conditional knockout Zmpste24 allele and used it to create adipocyte-specific Zmpste24–knockout mice. To boost farnesyl–prelamin A levels, we bred in the "prelamin A–only" Lmna allele. Gene expression, immunoblotting, and immunohistochemistry experiments revealed that adipose tissue in these mice had decreased Zmpste24 expression along with strikingly increased accumulation of prelamin A. In male mice, Zmpste24 deficiency in adipocytes was accompanied by modest changes in adipose stores (an 11% decrease in body weight, a 23% decrease in body fat mass, and significantly smaller gonadal and inguinal white adipose depots). No changes in adipose stores were detected in female mice, likely because prelamin A expression in adipose tissue is lower in female mice. Zmpste24 deficiency in adipocytes did not alter the number of macrophages in adipose tissue, nor did it alter plasma levels of glucose, triglycerides, or fatty acids. We conclude that ZMPSTE24 deficiency in adipocytes, and the accompanying accumulation of farnesyl–prelamin A, reduces adipose tissue stores, but only modestly and only in male mice.




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Monitoring the itinerary of lysosomal cholesterol in Niemann-Pick Type C1-deficient cells after cyclodextrin treatment [Research Articles]

Niemann-Pick disease type C (NPC) disease is a lipid-storage disorder that is caused by mutations in the genes encoding NPC proteins and results in lysosomal cholesterol accumulation. 2-Hydroxypropyl-β-cyclodextrin (CD) has been shown to reduce lysosomal cholesterol levels and enhance sterol homeostatic responses, but CD’s mechanism of action remains unknown. Recent work provides evidence that CD stimulates lysosomal exocytosis, raising the possibility that lysosomal cholesterol is released in exosomes. However, therapeutic concentrations of CD do not alter total cellular cholesterol, and cholesterol homeostatic responses at the ER are most consistent with increased ER membrane cholesterol. To address these disparate findings, here we used stable isotope labeling to track the movement of lipoprotein cholesterol cargo in response to CD in NPC1-deficient U2OS cells. Although released cholesterol was detectable, it was not associated with extracellular vesicles. Rather, we demonstrate that lysosomal cholesterol trafficks to the plasma membrane (PM), where it exchanges with lipoprotein-bound cholesterol in a CD-dependent manner. We found that in the absence of suitable extracellular cholesterol acceptors, cholesterol exchange is abrogated, cholesterol accumulates in the PM, and reesterification at the ER is increased. These results support a model in which CD promotes intracellular redistribution of lysosomal cholesterol, but not cholesterol exocytosis or efflux, during the restoration of cholesterol homeostatic responses.




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Alirocumab, evinacumab, and atorvastatin triple therapy regresses plaque lesions and improves lesion composition in mice [Research Articles]

Atherosclerosis-related CVD causes nearly 20 million deaths annually. Most patients are treated after plaques develop, so therapies must regress existing lesions. Current therapies reduce plaque volume, but targeting all apoB-containing lipoproteins with intensive combinations that include alirocumab or evinacumab, monoclonal antibodies against cholesterol-regulating proprotein convertase subtilisin/kexin type 9 and angiopoietin-like protein 3, may provide more benefit. We investigated the effect of such lipid-lowering interventions on atherosclerosis in APOE*3-Leiden.CETP mice, a well-established model for hyperlipidemia. Mice were fed a Western-type diet for 13 weeks and thereafter matched into a baseline group (euthanized at 13 weeks) and five groups that received diet alone (control) or with treatment [atorvastatin; atorvastatin and alirocumab; atorvastatin and evinacumab; or atorvastatin, alirocumab, and evinacumab (triple therapy)] for 25 weeks. We measured effects on cholesterol levels, plaque composition and morphology, monocyte adherence, and macrophage proliferation. All interventions reduced plasma total cholesterol (37% with atorvastatin to 80% with triple treatment; all P < 0.001). Triple treatment decreased non-HDL-C to 1.0 mmol/l (91% difference from control; P < 0.001). Atorvastatin reduced atherosclerosis progression by 28% versus control (P < 0.001); double treatment completely blocked progression and diminished lesion severity. Triple treatment regressed lesion size versus baseline in the thoracic aorta by 50% and the aortic root by 36% (both P < 0.05 vs. baseline), decreased macrophage accumulation through reduced proliferation, and abated lesion severity. Thus, high-intensive cholesterol-lowering triple treatment targeting all apoB-containing lipoproteins regresses atherosclerotic lesion area and improves lesion composition in mice, making it a promising potential approach for treating atherosclerosis.




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Hepatic PLIN5 signals via SIRT1 to promote autophagy and prevent inflammation during fasting [Research Articles]

Lipid droplets (LDs) are energy-storage organelles that are coated with hundreds of proteins, including members of the perilipin (PLIN) family. PLIN5 is highly expressed in oxidative tissues, including the liver, and is thought to play a key role in uncoupling LD accumulation from lipotoxicity; however, the mechanisms behind this action are incompletely defined. We investigated the role of hepatic PLIN5 in inflammation and lipotoxicity in a murine model under both fasting and refeeding conditions and in hepatocyte cultures. PLIN5 ablation with antisense oligonucleotides triggered a pro-inflammatory response in livers from mice only under fasting conditions. Similarly, PLIN5 mitigated lipopolysaccharide- or palmitic acid-induced inflammatory responses in hepatocytes. During fasting, PLIN5 was also required for the induction of autophagy, which contributed to its anti-inflammatory effects. The ability of PLIN5 to promote autophagy and prevent inflammation were dependent upon signaling through sirtuin 1 (SIRT1), which is known to be activated in response to nuclear PLIN5 under fasting conditions. Taken together, these data show that PLIN5 signals via SIRT1 to promote autophagy and prevent FA-induced inflammation as a means to maintain hepatocyte homeostasis during periods of fasting and FA mobilization.




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Serum amyloid A is not incorporated into HDL during HDL biogenesis [Research Articles]

Liver-derived serum amyloid A (SAA) is present in plasma where it is mainly associated with HDL and from which it is cleared more rapidly than are the other major HDL-associated apolipoproteins. Although evidence suggests that lipid-free and HDL-associated forms of SAA have different activities, the pathways by which SAA associates and disassociates with HDL are poorly understood. In this study, we investigated SAA lipidation by hepatocytes and how this lipidation relates to the formation of nascent HDL particles. We also examined hepatocyte-mediated clearance of lipid-free and HDL-associated SAA. We prepared hepatocytes from mice injected with lipopolysaccharide or an SAA-expressing adenoviral vector. Alternatively, we incubated primary hepatocytes from SAA-deficient mice with purified SAA. We analyzed conditioned media to determine the lipidation status of endogenously produced and exogenously added SAA. Examining the migration of lipidated species, we found that SAA is lipidated and forms nascent particles that are distinct from apoA-I-containing particles and that apoA-I lipidation is unaltered when SAA is overexpressed or added to the cells, indicating that SAA is not incorporated into apoA-I-containing HDL during HDL biogenesis. Like apoA-I formation, generation of SAA-containing particles was dependent on ABCA1, but not on scavenger receptor class B type I. Hepatocytes degraded significantly more SAA than apoA-I. Taken together, our results indicate that SAA’s lipidation and metabolism by the liver is independent of apoA-I and that SAA is not incorporated into HDL during HDL biogenesis.




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Is CYP2C70 the key to new mouse models to understand bile acids in humans? [Commentary]




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Lithium ion adduction enables UPLC-MS/MS-based analysis of multi-class 3-hydroxyl group-containing keto-steroids [Methods]

Steroids that contain a 3-hydroxyl group (3-OH steroids) are widely distributed in nature. During analysis with ESI-MS, they easily become dehydrated while in the protonated form, resulting in the production of several precursor ions and leading to low sensitivity of detection. To address this analytical challenge, here, we developed a method for the quantitation of 3-OH steroids by LC-MS/MS coupled with post-column addition of lithium (Li) ions to the mobile phase. The Li ion has a high affinity for the keto group of steroids, stabilizing their structures during ionization and permitting detection of analytes exclusively as the lithiated form. This not only improved the intensities of the precursor ions, but also promoted the formation of typical lithiated fragment ions. This improvement made the quantitation by multiple reaction monitoring more sensitive and reliable, as evidenced by 1.53–188 times enhanced detection sensitivity of 13 steroids that contained at least one keto and two hydroxyl groups or one keto and one 5-olefinic double bond, among 16 different 3-OH steroids. We deployed our newly developed method for profiling steroids in mouse brain tissue and identified six steroids in one tissue sample. Among these, 16-hydroxyestrone, tetrahydrocorticosterone, and 17α-hydroxypregnenolone were detected for the first time in the mouse brain. In summary, the method described here enables the detection of lithiated steroids by LC-MS/MS, including three 3-OH steroids not previously reported in the mouse brain. We anticipate that this new method may allow the determination of 3-OH steroids in different brain regions.




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A novel NanoBiT-based assay monitors the interaction between lipoprotein lipase and GPIHBP1 in real time [Methods]

The hydrolysis of triglycerides in triglyceride-rich lipoproteins by LPL is critical for the delivery of triglyceride-derived fatty acids to tissues, including heart, skeletal muscle, and adipose tissues. Physiologically active LPL is normally bound to the endothelial cell protein glycosylphosphatidylinositol-anchored high-density lipoprotein binding protein 1 (GPIHBP1), which transports LPL across endothelial cells, anchors LPL to the vascular wall, and stabilizes LPL activity. Disruption of LPL-GPIHBP1 binding significantly alters triglyceride metabolism and lipid partitioning. In this study, we modified the NanoLuc® Binary Technology split-luciferase system to develop a novel assay that monitors the binding of LPL to GPIHBP1 on endothelial cells in real time. We validated the specificity and sensitivity of the assay using endothelial lipase and a mutant version of LPL and found that this assay reliably and specifically detected the interaction between LPL and GPIHBP1. We then interrogated various endogenous and exogenous inhibitors of LPL-mediated lipolysis for their ability to disrupt the binding of LPL to GPIHBP1. We found that angiopoietin-like (ANGPTL)4 and ANGPTL3-ANGPTL8 complexes disrupted the interactions of LPL and GPIHBP1, whereas the exogenous LPL blockers we tested (tyloxapol, poloxamer-407, and tetrahydrolipstatin) did not. We also found that chylomicrons could dissociate LPL from GPIHBP1 and found evidence that this dissociation was mediated in part by the fatty acids produced by lipolysis. These results demonstrate the ability of this assay to monitor LPL-GPIHBP1 binding and to probe how various agents influence this important complex.




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Heritability of 596 lipid species and genetic correlation with cardiovascular traits in the Busselton Family Heart Study [Patient-Oriented and Epidemiological Research]

CVD is the leading cause of death worldwide, and genetic investigations into the human lipidome may provide insight into CVD risk. The aim of this study was to estimate the heritability of circulating lipid species and their genetic correlation with CVD traits. Targeted lipidomic profiling was performed on 4,492 participants from the Busselton Family Heart Study to quantify the major fatty acids of 596 lipid species from 33 classes. We estimated narrow-sense heritabilities of lipid species/classes and their genetic correlations with eight CVD traits: BMI, HDL-C, LDL-C, triglycerides, total cholesterol, waist-hip ratio, systolic blood pressure, and diastolic blood pressure. We report heritabilities and genetic correlations of new lipid species/subclasses, including acylcarnitine (AC), ubiquinone, sulfatide, and oxidized cholesteryl esters. Over 99% of lipid species were significantly heritable (h2: 0.06–0.50) and all lipid classes were significantly heritable (h2: 0.14–0.50). The monohexosylceramide and AC classes had the highest median heritabilities (h2 = 0.43). The largest genetic correlation was between clinical triglycerides and total diacylglycerol (rg = 0.88). We observed novel positive genetic correlations between clinical triglycerides and phosphatidylglycerol species (rg: 0.64–0.82), and HDL-C and alkenylphosphatidylcholine species (rg: 0.45–0.74). Overall, 51% of the 4,768 lipid species-CVD trait genetic correlations were statistically significant after correction for multiple comparisons. This is the largest lipidomic study to address the heritability of lipids and their genetic correlation with CVD traits. Future work includes identifying putative causal genetic variants for lipid species and CVD using genome-wide SNP and whole-genome sequencing data.




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Dynamics of sphingolipids and the serine palmitoyltransferase complex in rat oligodendrocytes during myelination [Research Articles]

Myelin is a unique lipid-rich membrane structure that accelerates neurotransmission and supports neuronal function. Sphingolipids are critical myelin components. Yet sphingolipid content and synthesis have not been well characterized in oligodendrocytes, the myelin-producing cells of the CNS. Here, using quantitative real-time PCR, LC-MS/MS-based lipid analysis, and biochemical assays, we examined sphingolipid synthesis during the peak period of myelination in the postnatal rat brain. Importantly, we characterized sphingolipid production in isolated oligodendrocytes. We analyzed sphingolipid distribution and levels of critical enzymes and regulators in the sphingolipid biosynthetic pathway, with focus on the serine palmitoyltransferase (SPT) complex, the rate-limiting step in this pathway. During myelination, levels of the major SPT subunits increased and oligodendrocyte maturation was accompanied by extensive alterations in the composition of the SPT complex. These included changes in the relative levels of two alternative catalytic subunits, SPTLC2 and -3, in the relative levels of isoforms of the small subunits, ssSPTa and -b, and in the isoform distribution of the SPT regulators, the ORMDLs. Myelination progression was accompanied by distinct changes in both the nature of the sphingoid backbone and the N-acyl chains incorporated into sphingolipids. We conclude that the distribution of these changes among sphingolipid family members is indicative of a selective channeling of the ceramide backbone toward specific downstream metabolic pathways during myelination. Our findings provide insights into myelin production in oligodendrocytes and suggest how dysregulation of the biosynthesis of this highly specialized membrane could contribute to demyelinating diseases.




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HDL inhibits endoplasmic reticulum stress-induced apoptosis of pancreatic {beta}-cells in vitro by activation of Smoothened [Research Articles]

Loss of pancreatic β-cell mass and function as a result of sustained ER stress is a core step in the pathogenesis of diabetes mellitus type 2. The complex control of β-cells and insulin production involves hedgehog (Hh) signaling pathways as well as cholesterol-mediated effects. In fact, data from studies in humans and animal models suggest that HDL protects against the development of diabetes through inhibition of ER stress and β-cell apoptosis. We investigated the mechanism by which HDL inhibits ER stress and apoptosis induced by thapsigargin, a sarco/ER Ca2+-ATPase inhibitor, in β-cells of a rat insulinoma cell line, INS1e. We further explored effects on the Hh signaling receptor Smoothened (SMO) with pharmacologic agonists and inhibitors. Interference with sterol synthesis or efflux enhanced β-cell apoptosis and abrogated the anti-apoptotic activity of HDL. During ER stress, HDL facilitated the efflux of specific oxysterols, including 24-hydroxycholesterol (OHC). Supplementation of reconstituted HDL with 24-OHC enhanced and, in cells lacking ABCG1 or the 24-OHC synthesizing enzyme CYP46A1, restored the protective activity of HDL. Inhibition of SMO countered the beneficial effects of HDL and also LDL, and SMO agonists decreased β-cell apoptosis in the absence of ABCG1 or CYP46A1. The translocation of the SMO-activated transcription factor glioma-associated oncogene GLI-1 was inhibited by ER stress but restored by both HDL and 24-OHC. In conclusion, the protective effect of HDL to counter ER stress and β-cell death involves the transport, generation, and mobilization of oxysterols for activation of the Hh signaling receptor SMO




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The data must be accessible to all [Editorials]




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SSO and other putative inhibitors of FA transport across membranes by CD36 disrupt intracellular metabolism, but do not affect FA translocation [Research Articles]

Membrane-bound proteins have been proposed to mediate the transport of long-chain FA (LCFA) transport through the plasma membrane (PM). These proposals are based largely on reports that PM transport of LCFAs can be blocked by a number of enzymes and purported inhibitors of LCFA transport. Here, using the ratiometric pH indicator (2',7'-bis-(2-carboxyethyl)-5-(and-6-)-carboxyfluorescein and acrylodated intestinal FA-binding protein-based dual fluorescence assays, we investigated the effects of nine inhibitors of the putative FA transporter protein CD36 on the binding and transmembrane movement of LCFAs. We particularly focused on sulfosuccinimidyl oleate (SSO), reported to be a competitive inhibitor of CD36-mediated LCFA transport. Using these assays in adipocytes and inhibitor-treated protein-free lipid vesicles, we demonstrate that rapid LCFA transport across model and biological membranes remains unchanged in the presence of these purported inhibitors. We have previously shown in live cells that CD36 does not accelerate the transport of unesterified LCFAs across the PM. Our present experiments indicated disruption of LCFA metabolism inside the cell within minutes upon treatment with many of the "inhibitors" previously assumed to inhibit LCFA transport across the PM. Furthermore, using confocal microscopy and a specific anti-SSO antibody, we found that numerous intracellular and PM-bound proteins are SSO-modified in addition to CD36. Our results support the hypothesis that LCFAs diffuse rapidly across biological membranes and do not require an active protein transporter for their transmembrane movement.




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A novel GPER antagonist protects against the formation of estrogen-induced cholesterol gallstones in female mice [Research Articles]

Many clinical studies and epidemiological investigations have clearly demonstrated that women are twice as likely to develop cholesterol gallstones as men, and oral contraceptives and other estrogen therapies dramatically increase that risk. Further, animal studies have revealed that estrogen promotes cholesterol gallstone formation through the estrogen receptor (ER) α, but not ERβ, pathway. More importantly, some genetic and pathophysiological studies have found that G protein-coupled estrogen receptor (GPER) 1 is a new gallstone gene, Lith18, on chromosome 5 in mice and produces additional lithogenic actions, working independently of ERα, to markedly increase cholelithogenesis in female mice. Based on computational modeling of GPER, a novel series of GPER-selective antagonists were designed, synthesized, and subsequently assessed for their therapeutic effects via calcium mobilization, cAMP, and ERα and ERβ fluorescence polarization binding assays. From this series of compounds, one new compound, 2-cyclohexyl-4-isopropyl-N-(4-methoxybenzyl)aniline (CIMBA), exhibits superior antagonism and selectivity exclusively for GPER. Furthermore, CIMBA reduces the formation of 17β-estradiol-induced gallstones in a dose-dependent manner in ovariectomized mice fed a lithogenic diet for 8 weeks. At 32 μg/day/kg CIMBA, no gallstones are found, even in ovariectomized ERα (–/–) mice treated with 6 μg/day 17β-estradiol and fed the lithogenic diet for 8 weeks. In conclusion, CIMBA treatment protects against the formation of estrogen-induced cholesterol gallstones by inhibiting the GPER signaling pathway in female mice. CIMBA may thus be a new agent for effectively treating cholesterol gallstone disease in women.­




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Schnyder corneal dystrophy-associated UBIAD1 is defective in MK-4 synthesis and resists autophagy-mediated degradation [Research Articles]

The autosomal dominant disorder Schnyder corneal dystrophy (SCD) is caused by mutations in UbiA prenyltransferase domain-containing protein-1 (UBIAD1), which uses geranylgeranyl pyrophosphate (GGpp) to synthesize the vitamin K2 subtype menaquinone-4 (MK-4). SCD is characterized by opacification of the cornea, owing to aberrant build-up of cholesterol in the tissue. We previously discovered that sterols stimulate association of UBIAD1 with ER-localized HMG-CoA reductase, which catalyzes a rate-limiting step in the synthesis of cholesterol and nonsterol isoprenoids, including GGpp. Binding to UBIAD1 inhibits sterol-accelerated ER-associated degradation (ERAD) of reductase and permits continued synthesis of GGpp in cholesterol-replete cells. GGpp disrupts UBIAD1-reductase binding and thereby allows for maximal ERAD of reductase as well as ER-to-Golgi translocation of UBIAD1. SCD-associated UBIAD1 is refractory to GGpp-mediated dissociation from reductase and remains sequestered in the ER to inhibit ERAD. Here, we report development of a biochemical assay for UBIAD1-mediated synthesis of MK-4 in isolated membranes and intact cells. Using this assay, we compared enzymatic activity of WT UBIAD1 with that of SCD-associated variants. Our studies revealed that SCD-associated UBIAD1 exhibited reduced MK-4 synthetic activity, which may result from its reduced affinity for GGpp. Sequestration in the ER protects SCD-associated UBIAD1 from autophagy and allows intracellular accumulation of the mutant protein, which amplifies the inhibitory effect on reductase ERAD. These findings have important implications not only for the understanding of SCD etiology but also for the efficacy of cholesterol-lowering statin therapy, which becomes limited, in part, because of UBIAD1-mediated inhibition of reductase ERAD.




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Slc43a3 is a regulator of free fatty acid flux [Research Articles]

Adipocytes take up long chain FAs through diffusion and protein-mediated transport, whereas FA efflux is considered to occur by diffusion. To identify potential membrane proteins that are involved in regulating FA flux in adipocytes, the expression levels of 55 membrane transporters without known function were screened in subcutaneous adipose samples from obese patients before and after bariatric surgery using branched DNA methodology. Among the 33 solute carrier (SLC) transporter family members screened, the expression of 14 members showed significant changes before and after bariatric surgery. One of them, Slc43a3, increased about 2.5-fold after bariatric surgery. Further investigation demonstrated that Slc43a3 is highly expressed in murine adipose tissue and induced during adipocyte differentiation in primary preadipocytes and in OP9 cells. Knockdown of Slc43a3 with siRNA in differentiated OP9 adipocytes reduced both basal and forskolin-stimulated FA efflux, while also increasing FA uptake and lipid droplet accumulation. In contrast, overexpression of Slc43a3 decreased FA uptake in differentiated OP9 cells and resulted in decreased lipid droplet accumulation. Therefore, Slc43a3 seems to regulate FA flux in adipocytes, functioning as a positive regulator of FA efflux and as a negative regulator of FA uptake.




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Myeloid-specific deficiency of pregnane X receptor decreases atherosclerosis in LDL receptor-deficient mice [Research Articles]

The pregnane X receptor (PXR) is a nuclear receptor that can be activated by numerous drugs and xenobiotic chemicals. PXR thereby functions as a xenobiotic sensor to coordinately regulate host responses to xenobiotics by transcriptionally regulating many genes involved in xenobiotic metabolism. We have previously reported that PXR has pro-atherogenic effects in animal models, but how PXR contributes to atherosclerosis development in different tissues or cell types remains elusive. In this study, we generated an LDL receptor-deficient mouse model with myeloid-specific PXR deficiency (PXRMyeLDLR–/–) to elucidate the role of macrophage PXR signaling in atherogenesis. The myeloid PXR deficiency did not affect metabolic phenotypes and plasma lipid profiles, but PXRMyeLDLR–/– mice had significantly decreased atherosclerosis at both aortic root and brachiocephalic arteries compared with control littermates. Interestingly, the PXR deletion did not affect macrophage adhesion and migration properties, but reduced lipid accumulation and foam cell formation in the macrophages. PXR deficiency also led to decreased expression of the scavenger receptor CD36 and impaired lipid uptake in macrophages of the PXRMyeLDLR–/– mice. Further, RNA-Seq analysis indicated that treatment with a prototypical PXR ligand affects the expression of many atherosclerosis-related genes in macrophages in vitro. These findings reveal a pivotal role of myeloid PXR signaling in atherosclerosis development and suggest that PXR may be a potential therapeutic target in atherosclerosis management.




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Hematopoiesis is regulated by cholesterol efflux pathways and lipid rafts: connections with cardiovascular diseases [Thematic Reviews]

Lipid rafts are highly ordered regions of the plasma membrane that are enriched in cholesterol and sphingolipids and play important roles in many cells. In hematopoietic stem and progenitor cells (HSPCs), lipid rafts house receptors critical for normal hematopoiesis. Lipid rafts also can bind and sequester kinases that induce negative feedback pathways to limit proliferative cytokine receptor cycling back to the cell membrane. Modulation of lipid rafts occurs through an array of mechanisms, with optimal cholesterol efflux one of the major regulators. As such, cholesterol homeostasis also regulates hematopoiesis. Increased lipid raft content, which occurs in response to changes in cholesterol efflux in the membrane, can result in prolonged receptor occupancy in the cell membrane and enhanced signaling. In addition, certain diseases, like diabetes, may contribute to lipid raft formation and affect cholesterol retention in rafts. In this review, we explore the role of lipid raft-related mechanisms in hematopoiesis and CVD (specifically, atherosclerosis) and discuss how defective cholesterol efflux pathways in HSPCs contribute to expansion of lipid rafts, thereby promoting myelopoiesis and thrombopoiesis. We also discuss the utility of cholesterol acceptors in contributing to lipid raft regulation and disruption, and highlight the potential to manipulate these pathways for therapeutic gain in CVD as well as other disorders with aberrant hematopoiesis.




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Biology of Lipid Rafts: Introduction to the Thematic Review Series [Thematic Reviews]

Lipid rafts are organized plasma membrane microdomains, which provide a distinct level of regulation of cellular metabolism and response to extracellular stimuli, affecting a diverse range of physiologic and pathologic processes. This Thematic Review Series focuses on Biology of Lipid Rafts rather than on their composition or structure. The aim is to provide an overview of ideas on how lipid rafts are involved in regulation of different pathways and how they interact with other layers of metabolic regulation. Articles in the series will review the involvement of lipid rafts in regulation of hematopoiesis, production of extracellular vesicles, host interaction with infection, and the development and progression of cancer, neuroinflammation, and neurodegeneration, as well as the current outlook on therapeutic targeting of lipid rafts.




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Commentary on SSO and other putative inhibitors of FA transport across membranes by CD36 disrupt intracellular metabolism, but do not affect fatty acid translocation [Commentaries]




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Images in Lipid Research [Editorials]




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Problem Notes for SAS®9 - 65939: "ERROR: Unable to transcode data to/from UCS-2 encoding" occurs when you run an SQL query using SAS/ACCESS Interface to ODBC on SAS 9.4M5 with UTF-8

When you run an SQL query using SAS/ACCESS Interface to ODBC under the following conditions, you might receive an error: You run SAS 9.4M5 (TS1M5) or SAS 9.4M6 (TS1M6)  i




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Problem Notes for SAS®9 - 65938: Incorrect values might be written to Hadoop for columns defined with the BIGINT data type

Large numeric values consisting of 16 digits in SAS might be incorrect when written to Hadoop for columns defined with the BIGINT data type.  This problem was introduced in SAS 9




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Problem Notes for SAS®9 - 65900: Registering an Oracle table to the metadata might fail and generate an error

When you register an Oracle table to the metadata, it might fail and generate an error similar to the following: "ERROR: An exception has been encountered...ERROR: Read Access Violation METALIB..."




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Problem Notes for SAS®9 - 60332: A SAS 9.4 installation in Update mode notifies you about unwritable files in the "SASHome\SASWebApplicationServer" directory

When you run SAS Deployment Wizard to install or update SAS 9.4 software, the file system is examined. If any files that the wizard needs to delete are found to be locked, they are reported as unwritable f




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Problem Notes for SAS®9 - 65918: SAS Workflow Services fails to respond after a com.sas.workflow.engine.policy.PolicyExecutionException error occurs for a workflow instance

When the problem occurs, you are unable to perform any workflow actions in a SAS solution that uses SAS Workflow Services.




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Problem Notes for SAS®9 - 65929: A grid-enabled sign-on to SAS 9.4M6 (TS1M6) fails with errors, including "Remote signon … canceled"

A sign-on to a grid-enabled environment fails while it is trying to communicate with the client host. The following errors then appear in the SAS log:


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Problem Notes for SAS®9 - 65922: Trying to read a Google BigQuery table that contains a variable defined as an array might result in a panic error and SAS shutting down

Trying to read a Google BigQuery table that contains a variable that is defined as an array of records might result in an error and cause SAS to shut down. This issue occurs when one of the variables contained in




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Problem Notes for SAS®9 - 34294: A missing discrete dependent variable in the selection model together with a OUTPUT statement might cause an Access Violation error

If the following conditions are met in PROC QLIM: the SELECT option and DISCRETE option are specified in the same MODEL statement or ENDOGENOUS statement the same dependent variable with S




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Problem Notes for SAS®9 - 65904: SAS Federation Server stops responding when you run queries against X_OBJECT_PRIVILEGES in SYSCAT and the queries run for hours

The select * from "SYSCAT"."SYSCAT"."X_EFFECTIVE_OBJECT_PRIVILEGES" query runs for hours. In this scenario, SAS Federation Server stops responding, making it unavailable for use. Restarting SAS Federation Server solves t




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Problem Notes for SAS®9 - 65914: You see the error "Driver does not support this optional feature" after trying to insert or append data to a Databricks table

You can create create a Databricks table by using PROC SQL, but you cannot insert data into the table. PROC APPEND cannot create a new table or append data to an existing table.




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Problem Notes for SAS®9 - 65574: Decimal values are rounded after they are inserted into a new Databricks table via SAS/ACCESS Interface to JDBC

A DATA step and PROC SQL can round numeric values while creating and loading data into a new Databricks table via JDBC.