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Threshold approximations for the exponential of a factorized operator family with correctors taken into account

T. A. Suslina
St. Petersburg Math. J. 35 (), 537-570.
Abstract, references and article information




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Ski resort announces immediate closure as relentless threat brings fewer visitors and increases debts: 'I feel like I'm in mourning'




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50,000 bulbs to sparkle Rockefeller Christmas tree

NEW YORK (AP): The Rockefeller Center Christmas tree arrived in New York City on Saturday, signalling the start of the holiday season in the Big Apple. The 74-foot Norway spruce was driven into Manhattan's Center Plaza, where it was hoisted in...




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Ischemic stroke disrupts the endothelial glycocalyx through activation of proHPSE via acrolein exposure [Molecular Bases of Disease]

Infiltration of peripheral immune cells after blood-brain barrier dysfunction causes severe inflammation after a stroke. Although the endothelial glycocalyx, a network of membrane-bound glycoproteins and proteoglycans that covers the lumen of endothelial cells, functions as a barrier to circulating cells, the relationship between stroke severity and glycocalyx dysfunction remains unclear. In this study, glycosaminoglycans, a component of the endothelial glycocalyx, were studied in the context of ischemic stroke using a photochemically induced thrombosis mouse model. Decreased levels of heparan sulfate and chondroitin sulfate and increased activity of hyaluronidase 1 and heparanase (HPSE) were observed in ischemic brain tissues. HPSE expression in cerebral vessels increased after stroke onset and infarct volume greatly decreased after co-administration of N-acetylcysteine + glycosaminoglycan oligosaccharides as compared with N-acetylcysteine administration alone. These results suggest that the endothelial glycocalyx was injured after the onset of stroke. Interestingly, scission activity of proHPSE produced by immortalized endothelial cells and HEK293 cells transfected with hHPSE1 cDNA were activated by acrolein (ACR) exposure. We identified the ACR-modified amino acid residues of proHPSE using nano LC–MS/MS, suggesting that ACR modification of Lys139 (6-kDa linker), Lys107, and Lys161, located in the immediate vicinity of the 6-kDa linker, at least in part is attributed to the activation of proHPSE. Because proHPSE, but not HPSE, localizes outside cells by binding with heparan sulfate proteoglycans, ACR-modified proHPSE represents a promising target to protect the endothelial glycocalyx.




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{alpha}2-Macroglobulin-like protein 1 can conȷugate and inhibit proteases through their hydroxyl groups, because of an enhanced reactivity of its thiol ester [Protein Structure and Folding]

Proteins in the α-macroglobulin (αM) superfamily use thiol esters to form covalent conjugation products upon their proteolytic activation. αM protease inhibitors use theirs to conjugate proteases and preferentially react with primary amines (e.g. on lysine side chains), whereas those of αM complement components C3 and C4B have an increased hydroxyl reactivity that is conveyed by a conserved histidine residue and allows conjugation to cell surface glycans. Human α2-macroglobulin–like protein 1 (A2ML1) is a monomeric protease inhibitor but has the hydroxyl reactivity–conveying histidine residue. Here, we have investigated the role of hydroxyl reactivity in a protease inhibitor by comparing recombinant WT A2ML1 and the A2ML1 H1084N mutant in which this histidine is removed. Both of A2ML1s' thiol esters were reactive toward the amine substrate glycine, but only WT A2ML1 reacted with the hydroxyl substrate glycerol, demonstrating that His-1084 increases the hydroxyl reactivity of A2ML1's thiol ester. Although both A2ML1s conjugated and inhibited thermolysin, His-1084 was required for the conjugation and inhibition of acetylated thermolysin, which lacks primary amines. Using MS, we identified an ester bond formed between a thermolysin serine residue and the A2ML1 thiol ester. These results demonstrate that a histidine-enhanced hydroxyl reactivity can contribute to protease inhibition by an αM protein. His-1084 did not improve A2ML1's protease inhibition at pH 5, indicating that A2ML1's hydroxyl reactivity is not an adaption to its acidic epidermal environment.




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Unique active-site and subsite features in the arabinogalactan-degrading GH43 exo-{beta}-1,3-galactanase from Phanerochaete chrysosporium [Enzymology]

Arabinogalactan proteins (AGPs) are plant proteoglycans with functions in growth and development. However, these functions are largely unexplored, mainly because of the complexity of the sugar moieties. These carbohydrate sequences are generally analyzed with the aid of glycoside hydrolases. The exo-β-1,3-galactanase is a glycoside hydrolase from the basidiomycete Phanerochaete chrysosporium (Pc1,3Gal43A), which specifically cleaves AGPs. However, its structure is not known in relation to its mechanism bypassing side chains. In this study, we solved the apo and liganded structures of Pc1,3Gal43A, which reveal a glycoside hydrolase family 43 subfamily 24 (GH43_sub24) catalytic domain together with a carbohydrate-binding module family 35 (CBM35) binding domain. GH43_sub24 is known to lack the catalytic base Asp conserved among other GH43 subfamilies. Our structure in combination with kinetic analyses reveals that the tautomerized imidic acid group of Gln263 serves as the catalytic base residue instead. Pc1,3Gal43A has three subsites that continue from the bottom of the catalytic pocket to the solvent. Subsite −1 contains a space that can accommodate the C-6 methylol of Gal, enabling the enzyme to bypass the β-1,6–linked galactan side chains of AGPs. Furthermore, the galactan-binding domain in CBM35 has a different ligand interaction mechanism from other sugar-binding CBM35s, including those that bind galactomannan. Specifically, we noted a Gly → Trp substitution, which affects pyranose stacking, and an Asp → Asn substitution in the binding pocket, which recognizes β-linked rather than α-linked Gal residues. These findings should facilitate further structural analysis of AGPs and may also be helpful in engineering designer enzymes for efficient biomass utilization.




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A highly potent CD73 biparatopic antibody blocks organization of the enzyme active site through dual mechanisms [Methods and Resources]

The dimeric ectonucleotidase CD73 catalyzes the hydrolysis of AMP at the cell surface to form adenosine, a potent suppressor of the immune response. Blocking CD73 activity in the tumor microenvironment can have a beneficial effect on tumor eradication and is a promising approach for cancer therapy. Biparatopic antibodies binding different regions of CD73 may be a means to antagonize its enzymatic activity. A panel of biparatopic antibodies representing the pairwise combination of 11 parental monoclonal antibodies against CD73 was generated by Fab-arm exchange. Nine variants vastly exceeded the potency of their parental antibodies with ≥90% inhibition of activity and subnanomolar EC50 values. Pairing the Fabs of parents with nonoverlapping epitopes was both sufficient and necessary whereas monovalent antibodies were poor inhibitors. Some parental antibodies yielded potent biparatopics with multiple partners, one of which (TB19) producing the most potent. The structure of the TB19 Fab with CD73 reveals that it blocks alignment of the N- and C-terminal CD73 domains necessary for catalysis. A separate structure of CD73 with a Fab (TB38) which complements TB19 in a particularly potent biparatopic shows its binding to a nonoverlapping site on the CD73 N-terminal domain. Structural modeling demonstrates a TB19/TB38 biparatopic antibody would be unable to bind the CD73 dimer in a bivalent manner, implicating crosslinking of separate CD73 dimers in its mechanism of action. This ability of a biparatopic antibody to both crosslink CD73 dimers and fix them in an inactive conformation thus represents a highly effective mechanism for the inhibition of CD73 activity.




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New Fighting Brings Three-year Armenian-Azerbaijani Truce to an End

16 July 2020

Laurence Broers

Associate Fellow, Russia and Eurasia Programme
Deadly clashes at the border between Armenia and Azerbaijan have followed renewed disappointment in the peace process, and cast a new shadow over its future.

2020-07-16-Armenia-Shrapnel-Conflict

A man shows a piece of shrapnel after attacks carried out by the Armenian army at Dondar Kuscu village near Tovuz, Azerbaijan. Photo by Aziz Karimov/Getty Images.

Although the Armenian-Azerbaijani conflict is focused on the Line of Contact around Nagorny Karabakh, a new - and significant - outbreak of violence has happened some 300 kilometres away on high ground along the de jure Armenia-Azerbaijan border.

Although not a first, violence in this area has generally been contained by the proximity of major transport and infrastructure arteries, and of civilian populations on both sides of the border. Plus, unlike in Nagorny Karabakh, the extended deterrents conferred by Armenia’s membership of the Collective Security Treaty Organization (CSTO) and bilateral agreements with Russia are also – theoretically at least – in force.

Despite this, battlespaces opened rapidly, with bombardment of civilian homes, drone strikes and cyberattacks on government and other sites being widely reported by both sides. At the time of writing, combined reported casualties were already at least 16, the highest for a single incident since April 2016’s ‘four-day war’.

Most are known to be Azerbaijani combatants, including the highest-ranking Azerbaijani serviceman to be killed in action since the 1990s – the respected Major General Polad Hashimov. And, although rumoured to be removed soon anyway following a campaign of negative briefing, Azerbaijani foreign minister Elmar Mammadyarov was publicly blamed in the immediate aftermath for ‘meaningless’ diplomacy and dismissed. He was replaced by education minister Jeyhun Bayramov.

Origins of the clashes

How the fighting began remains unclear. The escalation did not appear to result from a coordinated offensive operation of the kind that led to the four-day war, nor are there obvious strategic goals for either side in terms of the international border. There does appear to have been an element of surprise as an Azerbaijani vehicle unexpectedly encountered a new Armenian post, triggering deadly artillery exchanges.

Unclear boundaries in highland terrain may have played a role. Although referred to as the international border, the de jure boundary between Armenia and Azerbaijan - previously an inconsequential internal administrative boundary in the Soviet Union - is not clearly demarcated in many areas and does not coincide with lines of actual control.

Here, as in Nakhichevan - Azerbaijan’s exclave bordering Armenia and Iran - Armenian and Azerbaijani forces have been engaged in long-term, incremental competition for tactical advantage by claiming higher ground in ‘no man’s lands’. But in remote and cartographically ambiguous areas, the precise location of borders - and even place-names - are unclear, and rival forces can unexpectedly meet their adversaries.

Although clear strategic objectives appear absent, what might then have been a lesser incident escalated purposefully into a crisis – suggesting a political rationale.

A missed opportunity for a negotiations reset

Both Armenia and Azerbaijan began 2020 with unfinished consolidations of domestic power - whether bottom-up in the case of Armenia’s ‘Velvet Revolution’, or top-down in the case of Azerbaijan elite renewal. COVID-19 then added further challenges, with the government of Armenia facing significant domestic criticism for its handling of the pandemic, while numerous opposition activists in Azerbaijan were arrested, and the country’s economic vulnerability to external shocks was highlighted.

But throughout this, the frontlines did remain calm - as they generally have since the three-year period from 2014-2017 which witnessed regular skirmishes, use of heavy weaponry and four days of intensive combat in April 2016. In January 2019, the OSCE Minsk Group made the often-cited announcement that the foreign ministers of Armenia and Azerbaijan had agreed on the necessity of ‘preparing their populations for peace’.

Although the quietest year on the frontline since the 1990s then followed, neither side invested seriously in a peace strategy. After a reasonable start and moves towards humanitarian cooperation, relations between President Ilham Aliyev and Prime Minister Nikol Pashinyan eventually visibly soured.

Several moves, such as the go-ahead for new infrastructure in the occupied territories and Pashinyan’s attendance at de facto leader Arayik Harutyunyan’s inauguration in Nagorny Karabakh, were received in Azerbaijan as evidence of Armenian insincerity towards the peace process.

More inflammatory rhetoric then resumed, leading the OSCE Minsk Group to call for calm at the end of June. As recently as July 7, President Aliyev expressed public criticism of the peace process and emphasised the validity of Azerbaijan’s right to use force.

Each new round of Armenian-Azerbaijani fighting serves as an audit of the various restraining factors preventing a larger war. A Russian-Euro-Atlantic-Iranian consensus on proactively containing any new Armenian-Azerbaijani war appears to still hold, although senior-level attention from US secretary of state Mike Pompeo trailed that of his counterparts.

Russia acted quickly to offer mediation, reflecting the reality that any large-scale Armenia-Azerbaijan war would test Russia’s extended deterrence guarantees to Armenia. As in April 2016, Turkey has been vigorous in its support of Azerbaijan, raising concerns in Armenia and drawing oblique warnings from Russia. On the other hand, the CSTO - much to Armenian chagrin - dithered, initially calling then postponing a meeting citing the need for more time to study the situation.

Unprecedented spontaneous demonstrations in Baku called for war with Armenia, broke into the Azerbaijani parliament and, in some cases, articulated anti-government slogans. In the absence of reliable polling, such protests cannot be taken as evidence of a popular consensus in favour of war.

But they do underline the importance of the conflict as the one issue in Azerbaijan where open protest is accepted as legitimate and cannot easily be dispersed. As losses over the past week are counted, the dismissal of the foreign minister may not be sufficient to quell public anger.

Prospects are now real of a return to the dynamics in 2014-15: recursive low-level violence aimed at influencing the diplomatic calendar and public opinion while remaining below the deterrence threshold for triggering active external involvement.




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Unrest Threatens Ethiopia’s Transition Under Abiy Ahmed

24 July 2020

Abel Abate Demissie

Associate Fellow, Africa Programme

Ahmed Soliman

Research Fellow, Horn of Africa, Africa Programme
Ethiopia is experiencing a turbulent transition. The uncompromising approach of political forces threatens to tear the country apart and reverse the hard-won gains made in recent years.

GettyImages-1227453952.jpg

Burned buildings which were set on fire during the violence after the assassination of Oromo's pop singer Hachalu Hundessa are seen in Shashamene, Ethiopia on 12 July 2020. Photo: Getty Images.

Violent unrest in Addis Ababa and the surrounding Oromia region has led to the loss of over 177 lives, with the detention of thousands and widespread destruction to property. The rise of identity-based conflict and related political tension is the most severe test of Prime Minister Abiy Ahmed’s leadership since he came to power two years ago.

Protests erupted after the assassination on the 29th of June of Hachalu Hundessa, a prominent Oromo singer and activist. They spiralled into widespread rioting, looting and arson which devastated some towns. Targeted attacks and killings, particularly against ethnic minorities in Oromia, have damaged communities’ social fabric and heightened regional tensions.

The motives behind Hachalu’s murder are not fully understood. Suspects linked to a militant faction of the Oromo Liberation Front (OLF) have been arrested, while the government has blamed the Tigray People’s Liberation Front (TPLF) and certain prominent activist-politicians for inciting ethnic violence and attempting to derail Ethiopia’s fragile political liberalization. With investigations not yet concluded, any exploitation of this tragedy for political gain and without adequate due process is likely to further erode trust in the government and public institutions. 

Ethiopia’s progress halting under Abiy Ahmed

The prime minister came to power with a vision of national unity – encapsulated in his ideology of Medemer – and implemented a raft of reforms aimed at strengthening institutions and increasing political space, inclusivity and freedoms. Abiy was awarded the 2019 Nobel Peace Prize for Ethiopia’s rapprochement with Eritrea, alongside domestic progress. He was lauded for mediating within the region, including in Sudan following the ouster of Omar al-Bashir.

However, Ethiopia’s simmering ethnic and political divisions have deep roots, with structural problems that have been insufficiently addressed under Abiy’s helm. These include conflicting narratives about Ethiopia’s history, an unfinished federal project and tensions over the division of power between the centre and the regions.

There is also the desire for better representation from various ethnic groups, linked to the pursuit of greater autonomy in many places, notably in the ethnically diverse southern region. Reforms have increased expectations among competing constituencies, heightening tensions further.

There are signs that Ethiopia is sliding dangerously backwards, particularly on security and democracy. The country has seen worsening levels of militant ethno-nationalism and inter-communal violence, a dangerous standoff between the federal government and Tigray region, and an increase in politically motivated deaths.

This has been compounded by the government turning to familiar, heavy-handed and securitized responses to law and order challenges, including intimidation and mass arrests of civilians, opposition politicians and journalists, and shutting off the internet. The Ethiopian Human Rights Commission called for security forces to refrain from punitive measures and pursue conciliatory approaches in implementing the state of emergency measures brought in to deal with COVID-19.

The country is also facing a triple economic shock caused by the pandemic, renewed instability and devastating desert locust swarms. The IMF recently reduced Ethiopia’s GDP growth projections for 2019/2020 to 3.2 percent down from 6.2 percent and the country has estimated that 1.4 million workers will be affected by the pandemic, particularly in the service and manufacturing sectors.

The impact on agriculture, which accounts for a third of GDP and on which most Ethiopian’s depend for their livelihoods, is expected to be severe. In addition to shaking investor confidence, the likely impact on livelihoods, food security and poverty levels makes it harder for the government to maintain public support and could add to instability.

Political turmoil caused by election delay

The situation has been exacerbated by the indefinite postponement of elections that were due in August 2020, as a result of COVID-19.

Efforts to avoid a crisis of legitimacy for the government caused by the end of parliament’s term in October 2020, led to a decision on the way forward being taken by the Council of Constitutional Inquiry (CCI). This group of legal experts led by the President of the Supreme Court, gave the ruling Prosperity Party (PP) an open-ended extension of their term, rubberstamped by the House of Federation, with no limits set on their powers during the interim period.

This decision sets a dangerous precedent and is a missed opportunity to achieve compromise and advance the democratic process. The lack of inclusion has angered opposition groups, with whom the government has had little genuine dialogue. Many in the opposition had advocated for a transitional or technocratic government during the interim, despite risks of further divisions and a vacuum of authority, and accuse the PP of manipulating institutions to stay in power.

Furthermore, the TPLF, the ruling party in the Tigray region and formerly the dominant national political force, is pushing forward with its intention to hold unilateral regional elections. It formed a new regional electoral commission, in spite of objections from the national electoral board and the government, which has implied it could use force to stop the elections. This rising enmity between the PP and the TPLF is extremely worrying and requires immediate de-escalation.

A pathway to genuine dialogue and reconciliation

Ethiopia’s problems can only be resolved through dialogue, compromise and reconciliation. Escalating tensions, particularly between the federal government, Tigray and Oromo opposition groups risk furthering instability and fragmentation. One way to establish confidence would be for a group of respected Ethiopian personalities (elders and religious leaders) to lead a political dialogue, with actors carefully chosen and vetted to ensure the buy-in of government, opposition parties and the public, and supported by Ethiopia’s regional and international partners.

Once established, an initial goal of such a platform would be to induce elites, populist leaders, activists and influential regional media to stop exploiting division and violence for narrow gain. Priority agenda issues include the election timetable and required institutional and legal reforms, the role of the opposition during the interim period, strengthening reconciliation efforts, and the need to carefully manage autonomous security forces within regional states.

The prime minister can still weather the storm and implement his vision of a unified multinational Ethiopia based on the values of democracy, rule of law and justice, but only if the government and other stakeholders do all they can to reduce tensions and preserve peace at this critical juncture. COVID-19 and the associated economic impacts have deepened the country’s multifaceted problems, which can only be resolved by political actors committing themselves towards inclusive dialogue and reconciliation, as they seek to forge a shared common future.




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By Inventing Military Threats, Lukashenka Is Playing with Fire

20 August 2020

Keir Giles

Senior Consulting Fellow, Russia and Eurasia Programme
In a bid to reassert control in Belarus, Aliaksandr Lukashenka is trying to stir the worst fears of his supporters by playing the war card. But overplaying his hand could prove disastrous if it leads to confrontation with either Russia or NATO.

2020-08-20-Belarus-Protest-Election

A mass rally in Grodno, Belarus where factory workers went on strike in protest against the election results and actions of law enforcement officers. Photo by Viktor DrachevTASS via Getty Images.

Having failed to swiftly translate popular support into tangible political achievements, there are signs the protests against the fraudulent presidential election in Belarus may be losing momentum in the face of the state’s resilience and still-confident security and enforcement apparatus.

Attempts to blame the unrest on the West have focused on groups Lukashenka and Russia can both call enemies. And now Aliaksandr Lukashenka is not only inventing anti-Russian policies supposedly held by the opposition, such as suppressing the Russian language and closing the border with Russia, but also a supposed military threat from NATO.

Border movements

Increased military activity inside Belarus does give Lukashenka a wider range of options. Unscheduled activation of military units includes airspace defence practice with missiles and aircraft, electronic warfare (EW) units put on round-the-clock alert, and a number of infantry brigades preparing for live firing exercises.

Lukashenka is drawing attention to the north-west corner of Belarus, singling out the city of Grodno near the border with Poland and Lithuania as a supposed target for Western efforts at destabilization. Grodno is also the destination for an airborne brigade moving from the east to the west of the country and the focus of military exercises under way on the country’s western borders.

All this feeds Lukashenka’s narrative that Belarus is in danger from NATO and the West who are supposedly both stirring up the protests and seeking to exploit disorder - and that this danger extends to possible military clashes.

The Belarusian exercises are over the border from where NATO troops - including elements of the Light Dragoons, a British reconnaissance unit - have been in place in Poland as part of NATO's enhanced forward presence (eFP) since 2017. Pointing to NATO activity in Poland and Lithuania, Lukashenka said on Wednesday ‘we have to follow their movements and plans’ and that ‘they will answer for it if something happens’.

The danger is that having invented a tense situation in Grodno, Lukashenka may now need to be proved right. There may be staged incidents or ‘provocations’ against Belarus military forces, either supposedly instigated by protesters or even by NATO forces on the border - all aimed at bolstering the narrative that NATO, the EU, and the West in general are hostile to Belarus and that more drastic measures are necessary for protection.

Russia’s options still open

Although initial fears of a Russian move into Belarus have receded, Lukashenka’s complaints about NATO also bolster the case for Moscow to intervene. The military exercises fit the narrative that Belarus is under threat from the West - which is exactly the pretext Russia would need.

If this is believed in Moscow, where foreign minister Sergey Lavrov has already described events in Belarus as part of a ‘struggle for the post-Soviet space’, this makes a Russian intervention more likely. Moving forces away from their base near the border with Russia to the other end of the country near Poland and Lithuania also means any Russian entry into Belarus could go more smoothly, with fewer wild cards of possible Belarusian opposition to consider.

There are plenty of sensible, rational, logical reasons why a Russian military intervention in Belarus would be disastrous and counter-productive. But what seems sensible and rational in Europe and North America does not always carry weight in Moscow, which may see the situation completely differently and measure options by completely different standards.

One key area of doubt is the sympathies of the Belarus armed forces. Although some elements of the Belarusian army - particularly airborne and special forces - work closely with their Russian counterparts, more general suggestions that the Belarusian military is merely an extension of Russia’s and is not capable of taking decisions for itself are an over-simplification.

The Belarus armed forces do know that hosting Russian ground troops, airbases or air defence systems would fatally undermine the country’s hopes of avoiding being caught up in any confrontation between Russia and NATO.

And although the great majority of Belarusian officers are Russian-speaking and many have been trained and educated in Russia, there may be sufficient pride in national identity and resentment at heavy-handed treatment by Russia to lead to substantial obstruction of Russian initiatives.

The Belarus General Staff has already refused permission for a Russian aircraft carrying 155 personnel from the Rosgvardiya militarized security force and three tonnes of cargo ‘for the Belarusian interior ministry’ to land in Belarus. This could indicate not only tension between Russia and Belarus, but even between ministries within Belarus itself.

Like Russia, Lukashenka has plenty of options in reserve if his situation deteriorates further. Announcing a state of emergency would allow the Belarusian army to support the security forces in dealing with protests. If the army is on the move with their equipment they are better prepared to be brought into action if needed, but testing the loyalty of the armed forces could prove dangerous if the sympathies of army units turn out to lie more with civilians than with their oppressors from the interior ministry.

The military preparations against fictitious threats and a patiently-waiting Russia is a toxic mix and Belarus’s friends abroad must tread carefully. A key task for the European Union (EU) is to help the Belarusian people without providing a pretext for further violence and Russian intervention.

The right level of engagement needs to be carefully calibrated, avoiding disasters of strategic communication such as European Commissioner Thierry Breton being translated into English as saying Belarus is not part of Europe – with the lack of EU interest that that implies. Although the EU statement promising sanctions and offering funds received a mixed reception, at least it cannot be used by Lukashenka and Vladimir Putin as evidence that their warnings of a Western military threat are genuine.




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CDKN2A/p16INK4a suppresses hepatic fatty acid oxidation through the AMPK{alpha}2-SIRT1-PPAR{alpha} signaling pathway [Metabolism]

In addition to their well-known role in the control of cellular proliferation and cancer, cell cycle regulators are increasingly identified as important metabolic modulators. Several GWAS have identified SNPs near CDKN2A, the locus encoding for p16INK4a (p16), associated with elevated risk for cardiovascular diseases and type-2 diabetes development, two pathologies associated with impaired hepatic lipid metabolism. Although p16 was recently shown to control hepatic glucose homeostasis, it is unknown whether p16 also controls hepatic lipid metabolism. Using a combination of in vivo and in vitro approaches, we found that p16 modulates fasting-induced hepatic fatty acid oxidation (FAO) and lipid droplet accumulation. In primary hepatocytes, p16-deficiency was associated with elevated expression of genes involved in fatty acid catabolism. These transcriptional changes led to increased FAO and were associated with enhanced activation of PPARα through a mechanism requiring the catalytic AMPKα2 subunit and SIRT1, two known activators of PPARα. By contrast, p16 overexpression was associated with triglyceride accumulation and increased lipid droplet numbers in vitro, and decreased ketogenesis and hepatic mitochondrial activity in vivo. Finally, gene expression analysis of liver samples from obese patients revealed a negative correlation between CDKN2A expression and PPARA and its target genes. Our findings demonstrate that p16 represses hepatic lipid catabolism during fasting and may thus participate in the preservation of metabolic flexibility.




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The glucose-sensing transcription factor ChREBP is targeted by proline hydroxylation [Metabolism]

Cellular energy demands are met by uptake and metabolism of nutrients like glucose. The principal transcriptional regulator for adapting glycolytic flux and downstream pathways like de novo lipogenesis to glucose availability in many cell types is carbohydrate response element–binding protein (ChREBP). ChREBP is activated by glucose metabolites and post-translational modifications, inducing nuclear accumulation and regulation of target genes. Here we report that ChREBP is modified by proline hydroxylation at several residues. Proline hydroxylation targets both ectopically expressed ChREBP in cells and endogenous ChREBP in mouse liver. Functionally, we found that specific hydroxylated prolines were dispensable for protein stability but required for the adequate activation of ChREBP upon exposure to high glucose. Accordingly, ChREBP target gene expression was rescued by re-expressing WT but not ChREBP that lacks hydroxylated prolines in ChREBP-deleted hepatocytes. Thus, proline hydroxylation of ChREBP is a novel post-translational modification that may allow for therapeutic interference in metabolic diseases.




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CT Enhancement of a Nasal Leech After Thrombectomy




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SophosAI team presents three papers on AI applied to cybersecurity at CAMLIS

On October 24 and 25, SophosAI presents ideas on how to use models large and small—and defend against malignant ones.





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High-throughput and site-specific N-glycosylation analysis of human alpha-1-acid glycoprotein offers a great potential for new biomarker discovery

Toma Keser
Dec 29, 2020; 0:RA120.002433v1-mcp.RA120.002433
Research




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Multi-sample mass spectrometry-based approach for discovering injury markers in chronic kidney disease

Ji Eun Kim
Dec 20, 2020; 0:RA120.002159v1-mcp.RA120.002159
Research




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Identification of Microorganisms by Liquid Chromatography-Mass Spectrometry (LC-MS1) and in Silico Peptide Mass Libraries

Peter Lasch
Dec 1, 2020; 19:2125-2138
Technological Innovation and Resources




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Accelerating the field of epigenetic histone modification through mass spectrometry-based approaches

Congcong Lu
Nov 17, 2020; 0:R120.002257v1-mcp.R120.002257
Review




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Protein modification characteristics of the malaria parasite Plasmodium falciparum and the infected erythrocytes

Jianhua Wang
Nov 4, 2020; 0:RA120.002375v1-mcp.RA120.002375
Research




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Pluripotency of embryonic stem cells lacking clathrin-mediated endocytosis cannot be rescued by restoring cellular stiffness [Molecular Biophysics]

Mouse embryonic stem cells (mESCs) display unique mechanical properties, including low cellular stiffness in contrast to differentiated cells, which are stiffer. We have previously shown that mESCs lacking the clathrin heavy chain (Cltc), an essential component for clathrin-mediated endocytosis (CME), display a loss of pluripotency and an enhanced expression of differentiation markers. However, it is not known whether physical properties such as cellular stiffness also change upon loss of Cltc, similar to what is seen in differentiated cells, and if so, how these altered properties specifically impact pluripotency. Using atomic force microscopy (AFM), we demonstrate that mESCs lacking Cltc display higher Young's modulus, indicative of greater cellular stiffness, compared with WT mESCs. The increase in stiffness was accompanied by the presence of actin stress fibers and accumulation of the inactive, phosphorylated, actin-binding protein cofilin. Treatment of Cltc knockdown mESCs with actin polymerization inhibitors resulted in a decrease in the Young's modulus to values similar to those obtained with WT mESCs. However, a rescue in the expression profile of pluripotency factors was not obtained. Additionally, whereas WT mouse embryonic fibroblasts could be reprogrammed to a state of pluripotency, this was inhibited in the absence of Cltc. This indicates that the presence of active CME is essential for the pluripotency of embryonic stem cells. Additionally, whereas physical properties may serve as a simple readout of the cellular state, they may not always faithfully recapitulate the underlying molecular fate.




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NSun2 promotes cell migration through methylating autotaxin mRNA [Cell Biology]

NSun2 is an RNA methyltransferase introducing 5-methylcytosine into tRNAs, mRNAs, and noncoding RNAs, thereby influencing the levels or function of these RNAs. Autotaxin (ATX) is a secreted glycoprotein and is recognized as a key factor in converting lysophosphatidylcholine into lysophosphatidic acid (LPA). The ATX-LPA axis exerts multiple biological effects in cell survival, migration, proliferation, and differentiation. Here, we show that NSun2 is involved in the regulation of cell migration through methylating ATX mRNA. In the human glioma cell line U87, knockdown of NSun2 decreased ATX protein levels, whereas overexpression of NSun2 elevated ATX protein levels. However, neither overexpression nor knockdown of NSun2 altered ATX mRNA levels. Further studies revealed that NSun2 methylated the 3'-UTR of ATX mRNA at cytosine 2756 in vitro and in vivo. Methylation by NSun2 enhanced ATX mRNA translation. In addition, NSun2-mediated 5-methylcytosine methylation promoted the export of ATX mRNA from nucleus to cytoplasm in an ALYREF-dependent manner. Knockdown of NSun2 suppressed the migration of U87 cells, which was rescued by the addition of LPA. In summary, we identify NSun2-mediated methylation of ATX mRNA as a novel mechanism in the regulation of ATX.




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Progression of chronic kidney disease in familial LCAT deficiency: a follow-up of the Italian cohort

Chiara Pavanello
Dec 1, 2020; 61:1784-1788
Patient-Oriented and Epidemiological Research




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FH through the Retrospectoscope [Thematic Reviews]

Abstract

After training as a gastroenterologist in the UK the author became interested in lipidology while he was a research fellow in the USA and switched careers after returning home. Together with Nick Myant he introduced the use of plasma exchange to treat FH homozygotes and undertook non-steady state studies of LDL kinetics, which showed that the fractional catabolic rate of LDL remained constant irrespective of pool size. Subsequent steady-state turnover studies showed that FH homozygotes had an almost complete lack of receptor-mediated LDL catabolism, providing in vivo confirmation of the Nobel Prize-winning discovery by Goldstein and Brown that LDL receptor dysfunction was the cause of FH. Further investigation of metabolic defects in FH revealed that a significant proportion of LDL in homozygotes and heterozygotes was produced directly via a VLDL-independent pathway.

Management of heterozygous FH has been greatly facilitated by statins and PCSK9 inhibitors but remains dependent upon lipoprotein apheresis in homozygotes. In a recent analysis of a large cohort treated with a combination of lipid-lowering measures survival was markedly enhanced in homozygotes in the lowest quartile of on-treatment serum cholesterol. Emerging therapies could further improve the prognosis of homozygous FH whereas in heterozygotes the current need is better detection.




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The emerging roles of the macular pigment carotenoids throughout the lifespan and in prenatal supplementation [Thematic Reviews]

Since the publication of the Age-Related Eye Disease Study (AREDS2) in 2013, the macular pigment carotenoids lutein and zeaxanthin have become well known to both the eye care community and the public. It is a fascinating aspect of evolution that primates have repurposed photoprotective pigments and binding proteins from plants and insects to protect and enhance visual acuity. Moreover, utilization of these plant-derived nutrients has been widely embraced for preventing vision loss from age-related macular degeneration (AMD). More recently, there has been growing awareness that these nutrients can also play a role in improving visual performance in adults. On the other hand, the potential benefits of lutein and zeaxanthin supplementation at very young ages have been underappreciated. In this review, we examine the biochemical mechanisms and supportive data for lutein and zeaxanthin supplementation throughout the lifespan, with particular emphasis on prenatal supplementation. We propose that prenatal nutritional recommendations may aim at improving maternal and infant carotenoid status. Prenatal supplementation with lutein and zeaxanthin might enhance infant visual development and performance and may even prevent retinopathy of prematurity, possibilities that should be examined in future clinical studies.




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Chronic insomnia: diagnosis and non-pharmacological management




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First case of Zika virus spread through sexual contact is detected in UK




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UK clinics may be able to offer mitochrondrial donation next spring




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Angiopoietin-like protein 3 governs LDL-cholesterol levels through endothelial lipase-dependent VLDL clearance [Research Articles]

Angiopoietin-like protein (ANGPTL)3 regulates plasma lipids by inhibiting LPL and endothelial lipase (EL). ANGPTL3 inactivation lowers LDL-C independently of the classical LDLR-mediated pathway and represents a promising therapeutic approach for individuals with homozygous familial hypercholesterolemia due to LDLR mutations. Yet, how ANGPTL3 regulates LDL-C levels is unknown. Here, we demonstrate in hyperlipidemic humans and mice that ANGPTL3 controls VLDL catabolism upstream of LDL. Using kinetic, lipidomic, and biophysical studies, we show that ANGPTL3 inhibition reduces VLDL-lipid content and size, generating remnant particles that are efficiently removed from the circulation. This suggests that ANGPTL3 inhibition lowers LDL-C by limiting LDL particle production. Mechanistically, we discovered that EL is a key mediator of ANGPTL3’s novel pathway. Our experiments revealed that, although dispensable in the presence of LDLR, EL-mediated processing of VLDL becomes critical for LDLR-independent particle clearance. In the absence of EL and LDLR, ANGPTL3 inhibition perturbed VLDL catabolism, promoted accumulation of atypical remnants, and failed to reduce LDL-C. Taken together, we uncover ANGPTL3 at the helm of a novel EL-dependent pathway that lowers LDL-C in the absence of LDLR.




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Different rates of flux through the biosynthetic pathway for long-chain versus very-long-chain sphingolipids [Research Articles]

The backbone of all sphingolipids (SLs) is a sphingoid long-chain base (LCB) to which a fatty acid is N-acylated. Considerable variability exists in the chain length and degree of saturation of both of these hydrophobic chains, and recent work has implicated ceramides with different LCBs and N-acyl chains in distinct biological processes; moreover, they may play different roles in disease states and possibly even act as prognostic markers. We now demonstrate that the half-life, or turnover rate, of ceramides containing diverse N-acyl chains is different. By means of a pulse-labeling protocol using stable-isotope, deuterated free fatty acids, and following their incorporation into ceramide and downstream SLs, we show that very-long-chain (VLC) ceramides containing C24:0 or C24:1 fatty acids turn over much more rapidly than long-chain (LC) ceramides containing C16:0 or C18:0 fatty acids due to the more rapid metabolism of the former into VLC sphingomyelin and VLC hexosylceramide. In contrast, d16:1 and d18:1 ceramides show similar rates of turnover, indicating that the length of the sphingoid LCB does not influence the flux of ceramides through the biosynthetic pathway. Together, these data demonstrate that the N-acyl chain length of SLs may not only affect membrane biophysical properties but also influence the rate of metabolism of SLs so as to regulate their levels and perhaps their biological functions.




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Distinctive sphingolipid patterns in chronic multiple sclerosis lesions [Research Articles]

Multiple sclerosis (MS) is a CNS disease characterized by immune-mediated demyelination and progressive axonal loss. MS-related CNS damage and its clinical course have two main phases: active and inactive/progressive. Reliable biomarkers are being sought to allow identification of MS pathomechanisms and prediction of its course. The purpose of this study was to identify sphingolipid (SL) species as candidate biomarkers of inflammatory and neurodegenerative processes underlying MS pathology. We performed sphingolipidomic analysis by HPLC-tandem mass spectrometry to determine the lipid profiles in post mortem specimens from the normal-appearing white matter (NAWM) of the normal CNS (nCNS) from subjects with chronic MS (active and inactive lesions) as well as from patients with other neurological diseases. Distinctive SL modification patterns occurred in specimens from MS patients with chronic inactive plaques with respect to NAWM from the nCNS and active MS (Ac-MS) lesions. Chronic inactive MS (In-MS) lesions were characterized by decreased levels of dihydroceramide (dhCer), ceramide (Cer), and SM subspecies, whereas levels of hexosylceramide and Cer 1-phosphate (C1P) subspecies were significantly increased in comparison to NAWM of the nCNS as well as Ac-MS plaques. In contrast, Ac-MS lesions were characterized by a significant increase of major dhCer subspecies in comparison to NAWM of the nCNS. These results suggest the existence of different SL metabolic pathways in the active versus inactive phase within progressive stages of MS. Moreover, they suggest that C1P could be a new biomarker of the In-MS progressive phase, and its detection may help to develop future prognostic and therapeutic strategies for the disease.




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Progression of chronic kidney disease in familial LCAT deficiency: a follow-up of the Italian cohort [Patient-Oriented and Epidemiological Research]

Familial LCAT deficiency (FLD) is a rare genetic disorder of HDL metabolism, caused by loss-of-function mutations in the LCAT gene and characterized by a variety of symptoms including corneal opacities and kidney failure. Renal disease represents the leading cause of morbidity and mortality in FLD cases. However, the prognosis is not known and the rate of deterioration of kidney function is variable and unpredictable from patient to patient. In this article, we present data from a follow-up of the large Italian cohort of FLD patients, who have been followed for an average of 12 years. We show that renal failure occurs at the median age of 46 years, with a median time to a second recurrence of 10 years. Additionally, we identify high plasma unesterified cholesterol level as a predicting factor for rapid deterioration of kidney function. In conclusion, this study highlights the severe consequences of FLD, underlines the need of correct early diagnosis and referral of patients to specialized centers, and highlights the urgency for effective treatments to prevent or slow renal disease in patients with LCAT deficiency.




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Leptin modulates pancreatic {beta}-cell membrane potential through Src kinase-mediated phosphorylation of NMDA receptors [Membrane Biology]

The adipocyte-derived hormone leptin increases trafficking of KATP and Kv2.1 channels to the pancreatic β-cell surface, resulting in membrane hyperpolarization and suppression of insulin secretion. We have previously shown that this effect of leptin is mediated by the NMDA subtype of glutamate receptors (NMDARs). It does so by potentiating NMDAR activity, thus enhancing Ca2+ influx and the ensuing downstream signaling events that drive channel trafficking to the cell surface. However, the molecular mechanism by which leptin potentiates NMDARs in β-cells remains unknown. Here, we report that leptin augments NMDAR function via Src kinase–mediated phosphorylation of the GluN2A subunit. Leptin-induced membrane hyperpolarization diminished upon pharmacological inhibition of GluN2A but not GluN2B, indicating involvement of GluN2A-containing NMDARs. GluN2A harbors tyrosine residues that, when phosphorylated by Src family kinases, potentiate NMDAR activity. We found that leptin increases phosphorylation of Tyr-418 in Src, an indicator of kinase activation. Pharmacological inhibition of Src or overexpression of a kinase-dead Src mutant prevented the effect of leptin, whereas a Src kinase activator peptide mimicked it. Using mutant GluN2A overexpression, we show that Tyr-1292 and Tyr-1387 but not Tyr-1325 are responsible for the effect of leptin. Importantly, β-cells from db/db mice, a type 2 diabetes mouse model lacking functional leptin receptors, or from obese diabetic human donors failed to respond to leptin but hyperpolarized in response to NMDA. Our study reveals a signaling pathway wherein leptin modulates NMDARs via Src to regulate β-cell excitability and suggests NMDARs as a potential target to overcome leptin resistance.




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Analytical Guidelines for co-fractionation Mass Spectrometry Obtained through Global Profiling of Gold Standard Saccharomyces cerevisiae Protein Complexes [Research]

Co-fractionation MS (CF-MS) is a technique with potential to characterize endogenous and unmanipulated protein complexes on an unprecedented scale. However this potential has been offset by a lack of guidelines for best-practice CF-MS data collection and analysis. To obtain such guidelines, this study thoroughly evaluates novel and published Saccharomyces cerevisiae CF-MS data sets using very high proteome coverage libraries of yeast gold standard complexes. A new method for identifying gold standard complexes in CF-MS data, Reference Complex Profiling, and the Extending 'Guilt-by-Association' by Degree (EGAD) R package are used for these evaluations, which are verified with concurrent analyses of published human data. By evaluating data collection designs, which involve fractionation of cell lysates, it is found that near-maximum recall of complexes can be achieved with fewer samples than published studies. Distributing sample collection across orthogonal fractionation methods, rather than a single high resolution data set, leads to particularly efficient recall. By evaluating 17 different similarity scoring metrics, which are central to CF-MS data analysis, it is found that two metrics rarely used in past CF-MS studies – Spearman and Kendall correlations – and the recently introduced Co-apex metric frequently maximize recall, whereas a popular metric—Euclidean distance—delivers poor recall. The common practice of integrating external genomic data into CF-MS data analysis is also evaluated, revealing that this practice may improve the precision and recall of known complexes but is generally unsuitable for predicting novel complexes in model organisms. If studying nonmodel organisms using orthologous genomic data, it is found that particular subsets of fractionation profiles (e.g. the lowest abundance quartile) should be excluded to minimize false discovery. These assessments are summarized in a series of universally applicable guidelines for precise, sensitive and efficient CF-MS studies of known complexes, and effective predictions of novel complexes for orthogonal experimental validation.




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Identification of Microorganisms by Liquid Chromatography-Mass Spectrometry (LC-MS1) and in Silico Peptide Mass Libraries [Technological Innovation and Resources]

Over the past decade, modern methods of MS (MS) have emerged that allow reliable, fast and cost-effective identification of pathogenic microorganisms. Although MALDI-TOF MS has already revolutionized the way microorganisms are identified, recent years have witnessed also substantial progress in the development of liquid chromatography (LC)-MS based proteomics for microbiological applications. For example, LC-tandem MS (LC-MS2) has been proposed for microbial characterization by means of multiple discriminative peptides that enable identification at the species, or sometimes at the strain level. However, such investigations can be laborious and time-consuming, especially if the experimental LC-MS2 data are tested against sequence databases covering a broad panel of different microbiological taxa. In this proof of concept study, we present an alternative bottom-up proteomics method for microbial identification. The proposed approach involves efficient extraction of proteins from cultivated microbial cells, digestion by trypsin and LC–MS measurements. Peptide masses are then extracted from MS1 data and systematically tested against an in silico library of all possible peptide mass data compiled in-house. The library has been computed from the UniProt Knowledgebase covering Swiss-Prot and TrEMBL databases and comprises more than 12,000 strain-specific in silico profiles, each containing tens of thousands of peptide mass entries. Identification analysis involves computation of score values derived from correlation coefficients between experimental and strain-specific in silico peptide mass profiles and compilation of score ranking lists. The taxonomic positions of the microbial samples are then determined by using the best-matching database entries. The suggested method is computationally efficient – less than 2 mins per sample - and has been successfully tested by a test set of 39 LC-MS1 peak lists obtained from 19 different microbial pathogens. The proposed method is rapid, simple and automatable and we foresee wide application potential for future microbiological applications.




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WITHDRAWN: Extraordinary apolipoprotein oxidation in chronic hepatitis C and liver cirrhosis [13. Other]

Withdrawn by Author.




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Translating Divergent Environmental Stresses into a Common Proteome Response through Hik33 in a Model Cyanobacterium [Research]

The histidine kinase Hik33 plays important roles in mediating cyanobacterial response to divergent types of abiotic stresses including cold, salt, high light (HL), and osmotic stresses. However, how these functions are regulated by Hik33 remains to be addressed. Using a hik33-deficient strain (hik33) of Synechocystis sp. PCC 6803 (Synechocystis) and quantitative proteomics, we found that Hik33 depletion induces differential protein expression highly similar to that induced by divergent types of stresses. This typically includes downregulation of proteins in photosynthesis and carbon assimilation that are necessary for cell propagation, and upregulation of heat shock proteins, chaperons, and proteases that are important for cell survival. This observation indicates that depletion of Hik33 alone mimics divergent types of abiotic stresses, and that Hik33 could be important for preventing abnormal stress response in the normal condition. Moreover, we found the majority of proteins of plasmid origin were significantly upregulated in hik33, though their biological significance remains to be addressed. Together, the systematically characterized Hik33-regulated cyanobacterial proteome, which is largely involved in stress responses, builds the molecular basis for Hik33 as a general regulator of stress responses.




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Chromatin proteomics to study epigenetics - challenges and opportunities [Review]

Regulation of gene expression is essential for the functioning of all eukaryotic organisms. Understanding gene expression regulation requires determining which proteins interact with regulatory elements in chromatin. Mass spectrometry-based analysis of chromatin has emerged as a powerful tool to identify proteins associated with gene regulation, as it allows studying protein function and protein complex formation in their in vivo chromatin-bound context. Total chromatin isolated from cells can be directly analysed using mass spectrometry or further fractionated into transcriptionally active and inactive chromatin prior to MS-based analysis. Newly formed chromatin that is assembled during DNA replication can also be specifically isolated and analysed. Furthermore, capturing specific chromatin domains facilitates the identification of previously unknown transcription factors interacting with these domains. Finally, in recent years, advances have been made towards identifying proteins that interact with a single genomic locus of interest. In this review, we highlight the power of chromatin proteomics approaches and how these provide complementary alternatives compared to conventional affinity purification methods. Furthermore, we discuss the biochemical challenges that should be addressed to consolidate and expand the role of chromatin proteomics as a key technology in the context of gene expression regulation and epigenetics research in health and disease.




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Isolation of acetylated and unmodified protein N-terminal peptides by strong cation exchange chromatographic separation of TrypN-digested peptides [Technological Innovation and Resources]

We developed a simple and rapid method to enrich protein N-terminal peptides, in which the protease TrypN is first employed to generate protein N-terminal peptides without Lys or Arg and internal peptides with two positive charges at their N-termini, and then the N-terminal peptides with or without N-acetylation are separated from the internal peptides by strong cation exchange chromatography according to a retention model based on the charge/orientation of peptides. This approach was applied to 20 μg of human HEK293T cell lysate proteins to profile the N-terminal proteome. On average, 1,550 acetylated and 200 unmodified protein N-terminal peptides were successfully identified in a single LC/MS/MS run with less than 3% contamination with internal peptides, even when we accepted only canonical protein N-termini registered in the Swiss-Prot database. Since this method involves only two steps, protein digestion and chromatographic separation, without the need for tedious chemical reactions, it should be useful for comprehensive profiling of protein N-termini, including proteoforms with neo-N-termini.




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Protein modification characteristics of the malaria parasite Plasmodium falciparum and the infected erythrocytes [Research]

Malaria elimination is still pending on the development of novel tools that rely on a deep understanding of parasite biology. Proteins of all living cells undergo a myriad number of posttranslational modifications (PTMs) that are critical to multifarious life processes. An extensive proteome-wide dissection revealed a fine PTM map of most proteins in both Plasmodium falciparum, the causative agent of severe malaria, and the infected red blood cells. More than two-thirds of proteins of the parasite and its host cell underwent extensive and dynamic modification throughout the erythrocytic developmental stage. PTMs critically modulate the virulence factors involved in the host-parasite interaction and pathogenesis. Furthermore, P. falciparum stabilized the supporting proteins of erythrocyte origin by selective de-modification. Collectively, our multiple omic analyses, apart from having furthered a deep understanding of the systems biology of P. falciparum and malaria pathogenesis, provide a valuable resource for mining new antimalarial targets.




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Accelerating the field of epigenetic histone modification through mass spectrometry-based approaches [Review]

Histone post-translational modifications (PTMs) are one of the main mechanisms of epigenetic regulation. Dysregulation of histone PTMs leads to many human diseases, such as cancer. Due to its high-throughput, accuracy, and flexibility, mass spectrometry (MS) has emerged as a powerful tool in the epigenetic histone modification field, allowing the comprehensive and unbiased analysis of histone PTMs and chromatin-associated factors. Coupled with various techniques from molecular biology, biochemistry, chemical biology and biophysics, MS has been employed to characterize distinct aspects of histone PTMs in the epigenetic regulation of chromatin functions. In this review we will describe advancements in the field of MS that have facilitated the analysis of histone PTMs and chromatin biology.  




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Multi-sample mass spectrometry-based approach for discovering injury markers in chronic kidney disease [Research]

Urinary proteomics studies have primarily focused on identifying markers of chronic kidney disease (CKD) progression. Here, we aimed to determine urinary markers of CKD renal parenchymal injury through proteomics analysis in animal kidney tissues and cells and in the urine of patients with CKD. Label-free quantitative proteomics analysis based on liquid chromatography-tandem mass spectrometry was performed on urine samples obtained from 6 normal controls and 9, 11, and 10 patients with CKD stages 1, 3, and 5, respectively, and on kidney tissue samples from a rat CKD model by 5/6 nephrectomy. Tandem mass tag-based quantitative proteomics analysis was performed for primary cultured glomerular endothelial cells (GECs) and proximal tubular epithelial cells (PTECs) before and after inducing 24-h hypoxia injury. Upon hierarchical clustering, out of 858 differentially expressed proteins (DEPs) in the urine of CKD patients, the levels of 416 decreased and 403 increased sequentially according to the disease stage, respectively. Among 2965 DEPs across 5/6 nephrectomized and sham-operated rat kidney tissues, 86 DEPs showed same expression patterns in the urine and kidney tissue. After cross-validation with two external animal proteome datasets, 38 DEPs were organized; only 10 DEPs, including serotransferrin, gelsolin, poly ADP-ribose polymerase 1, neuroblast differentiation-associated protein AHNAK, microtubule-associated protein 4, galectin-1, protein S, thymosin beta-4, myristoylated alanine-rich C-kinase substrate, and vimentin were finalized by screening human GECs and PTECs data. Among these ten potential candidates for universal CKD marker, validation analyses for protein S and galectin-1 were conducted. Galectin-1 was observed to have a significant inverse correlation with renal function as well as higher expression in glomerulus with chronic injury than protein S. This constitutes the first multi-sample proteomics study for identifying key renal-expressed proteins associated with CKD progression. The discovered proteins represent potential markers of chronic renal cell and tissue damage and candidate contributors to CKD pathophysiology.




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High-throughput and site-specific N-glycosylation analysis of human alpha-1-acid glycoprotein offers a great potential for new biomarker discovery [Research]

Alpha-1-acid glycoprotein (AGP) is an acute phase glycoprotein in blood, which is primarily synthetized in the liver and whose biological role is not completely understood. It consists of 45% carbohydrates that are present in the form of five N-linked complex glycans. AGP N-glycosylation was shown to be changed in many different diseases and some changes appear to be disease-specific, thus it has a great diagnostic and prognostic potential. However, AGP glycosylation was mainly analyzed in small cohorts and without detailed site-specific glycan information. Here, we developed a cost-effective method for a high-throughput and site-specific N-glycosylation LC-MS analysis of AGP which can be applied on large cohorts, aid in search for novel disease biomarkers and enable better understanding of AGP’s role and function in health and disease. The method does not require isolation of AGP with antibodies and affinity chromatography, but AGP is enriched by acid precipitation from 5 μl of bloodplasma in a 96 well format. After trypsinization, AGP glycopeptides are purified using a hydrophilic interaction chromatography based solid-phase extraction and analyzed by RP-LC-ESI-MS. We used our method to show for the first time that AGP N-glycan profile is stable in healthy individuals (14 individuals in 3 time points), which is a requirement for evaluation of its diagnostic potential. Furthermore, we tested our method on a population including individuals with registered hyperglycemia in critical illness (59 cases and 49 controls), which represents a significantly increased risk of developing type 2 diabetes. Individuals at higher risk of diabetes presented increased N-glycan branching on AGP’s second glycosylation site and lower sialylation of N-glycans on AGP’s third and AGP1’s fourth glycosylation site. Although this should be confirmed on a larger prospective cohort, it indicates that site-specific AGP N-glycan profile could help distinguish individuals who are at risk of type 2 diabetes.




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Exploring Public International Law and the Rights of Individuals with Chinese Scholars - Part Three

Exploring Public International Law and the Rights of Individuals with Chinese Scholars - Part Three Other resource sysadmin 30 October 2018

As part of a roundtable series, Chatham House, China University of Political Science and Law (CUPL) and the Graduate Institute Geneva held a two-day roundtable meeting in Geneva on public international law and the rights of individuals.

The Representative of China at the 19th Session of the Human Rights Council, Palais des Nations, Geneva. 27 February 2012. Photo: UN Photo Geneva/Violaine Martin.

The specific objectives were to:

  • create a platform for Chinese international law academics working on international human rights law issues to present their thinking and exchange ideas with counterparts from outside China;
  • build stronger understanding within the wider international law community of intellectual debates taking place in China about the international human rights system and China’s role within it;
  • support networking between Chinese and non-Chinese academics working on international human rights and related areas of international law.

The roundtable forms part of a wider Chatham House project exploring China’s impact on the international human rights system and was inspired by early discussions with a burgeoning community of Chinese academics thinking, writing (mainly in Chinese) and teaching about international human rights law.

For CUPL, one of the largest and most prestigious law schools in China and perhaps the only university in the world with an entire faculty of international law, the initiative is part of a drive to forge partnerships beyond China in the international law field.

The meeting in Geneva was co-hosted by the Graduate Institute Geneva and involved 19 participants, 9 Chinese (from six research institutions in Beijing and Shanghai) and 11 non-Chinese (from eight research institutions in Australia, Germany, the Netherlands, Switzerland, the United Kingdom and the United States).

To ensure continuity while also expanding the expert network being built, the third meeting included a mix of participants from the first two meetings and some new participants

All discussions were held in English under the Chatham House Rule.




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Optimized incorporation of an unnatural fluorescent amino acid affords measurement of conformational dynamics governing high-fidelity DNA replication [DNA and Chromosomes]

DNA polymerase from bacteriophage T7 undergoes large, substrate-induced conformational changes that are thought to account for high replication fidelity, but prior studies were adversely affected by mutations required to construct a Cys-lite variant needed for site-specific fluorescence labeling. Here we have optimized the direct incorporation of a fluorescent un-natural amino acid, (7-hydroxy-4-coumarin-yl)-ethylglycine, using orthogonal amber suppression machinery in Escherichia coli. MS methods verify that the unnatural amino acid is only incorporated at one position with minimal background. We show that the single fluorophore provides a signal to detect nucleotide-induced conformational changes through equilibrium and stopped-flow kinetic measurements of correct nucleotide binding and incorporation. Pre-steady-state chemical quench methods show that the kinetics and fidelity of DNA replication catalyzed by the labeled enzyme are largely unaffected by the unnatural amino acid. These advances enable rigorous analysis to establish the kinetic and mechanistic basis for high-fidelity DNA replication.




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Kinetic investigation of the polymerase and exonuclease activities of human DNA polymerase ϵ holoenzyme [DNA and Chromosomes]

In eukaryotic DNA replication, DNA polymerase ε (Polε) is responsible for leading strand synthesis, whereas DNA polymerases α and δ synthesize the lagging strand. The human Polε (hPolε) holoenzyme is comprised of the catalytic p261 subunit and the noncatalytic p59, p17, and p12 small subunits. So far, the contribution of the noncatalytic subunits to hPolε function is not well understood. Using pre-steady-state kinetic methods, we established a minimal kinetic mechanism for DNA polymerization and editing catalyzed by the hPolε holoenzyme. Compared with the 140-kDa N-terminal catalytic fragment of p261 (p261N), which we kinetically characterized in our earlier studies, the presence of the p261 C-terminal domain (p261C) and the three small subunits increased the DNA binding affinity and the base substitution fidelity. Although the small subunits enhanced correct nucleotide incorporation efficiency, there was a wide range of rate constants when incorporating a correct nucleotide over a single-base mismatch. Surprisingly, the 3'→5' exonuclease activity of the hPolε holoenzyme was significantly slower than that of p261N when editing both matched and mismatched DNA substrates. This suggests that the presence of p261C and the three small subunits regulates the 3'→5' exonuclease activity of the hPolε holoenzyme. Together, the 3'→5' exonuclease activity and the variable mismatch extension activity modulate the overall fidelity of the hPolε holoenzyme by up to 3 orders of magnitude. Thus, the presence of p261C and the three noncatalytic subunits optimizes the dual enzymatic activities of the catalytic p261 subunit and makes the hPolε holoenzyme an efficient and faithful replicative DNA polymerase.




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A human cancer cell line initiates DNA replication normally in the absence of ORC5 and ORC2 proteins [DNA and Chromosomes]

The origin recognition complex (ORC), composed of six subunits, ORC1–6, binds to origins of replication as a ring-shaped heterohexameric ATPase that is believed to be essential to recruit and load MCM2–7, the minichromosome maintenance protein complex, around DNA and initiate DNA replication. We previously reported the creation of viable cancer cell lines that lacked detectable ORC1 or ORC2 protein without a reduction in the number of origins firing. Here, using CRISPR-Cas9–mediated mutations, we report that human HCT116 colon cancer cells also survive when ORC5 protein expression is abolished via a mutation in the initiator ATG of the ORC5 gene. Even if an internal methionine is used to produce an undetectable, N terminally deleted ORC5, the protein would lack 80% of the AAA+ ATPase domain, including the Walker A motif. The ORC5-depleted cells show normal chromatin binding of MCM2–7 and initiate replication from a similar number of origins as WT cells. In addition, we introduced a second mutation in ORC2 in the ORC5 mutant cells, rendering both ORC5 and ORC2 proteins undetectable in the same cells and destabilizing the ORC1, ORC3, and ORC4 proteins. Yet the double mutant cells grow, recruit MCM2–7 normally to chromatin, and initiate DNA replication with normal number of origins. Thus, in these selected cancer cells, either a crippled ORC lacking ORC2 and ORC5 and present at minimal levels on the chromatin can recruit and load enough MCM2–7 to initiate DNA replication, or human cell lines can sometimes recruit MCM2–7 to origins independent of ORC.




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Polymerase {gamma} efficiently replicates through many natural template barriers but stalls at the HSP1 quadruplex [Enzymology]

Faithful replication of the mitochondrial genome is carried out by a set of key nuclear-encoded proteins. DNA polymerase γ is a core component of the mtDNA replisome and the only replicative DNA polymerase localized to mitochondria. The asynchronous mechanism of mtDNA replication predicts that the replication machinery encounters dsDNA and unique physical barriers such as structured genes, G-quadruplexes, and other obstacles. In vitro experiments here provide evidence that the polymerase γ heterotrimer is well-adapted to efficiently synthesize DNA, despite the presence of many naturally occurring roadblocks. However, we identified a specific G-quadruplex–forming sequence at the heavy-strand promoter (HSP1) that has the potential to cause significant stalling of mtDNA replication. Furthermore, this structured region of DNA corresponds to the break site for a large (3,895 bp) deletion observed in mitochondrial disease patients. The presence of this deletion in humans correlates with UV exposure, and we have found that efficiency of polymerase γ DNA synthesis is reduced after this quadruplex is exposed to UV in vitro.




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Phosphorylation of SMURF2 by ATM exerts a negative feedback control of DNA damage response [DNA and Chromosomes]

Timely repair of DNA double-strand breaks (DSBs) is essential to maintaining genomic integrity and preventing illnesses induced by genetic abnormalities. We previously demonstrated that the E3 ubiquitin ligase SMURF2 plays a critical tumor suppressing role via its interaction with RNF20 (ring finger protein 20) in shaping chromatin landscape and preserving genomic stability. However, the mechanism that mobilizes SMURF2 in response to DNA damage remains unclear. Using biochemical approaches and MS analysis, we show that upon the onset of the DNA-damage response, SMURF2 becomes phosphorylated at Ser384 by ataxia telangiectasia mutated (ATM) serine/threonine kinase, and this phosphorylation is required for its interaction with RNF20. We demonstrate that a SMURF2 mutant with an S384A substitution has reduced capacity to ubiquitinate RNF20 while promoting Smad3 ubiquitination unabatedly. More importantly, mouse embryonic fibroblasts expressing the SMURF2 S384A mutant show a weakened ability to sustain the DSB response compared with those expressing WT SMURF2 following etoposide treatment. These data indicate that SMURF2-mediated RNF20 ubiquitination and degradation controlled by ataxia telangiectasia mutated–induced phosphorylation at Ser384 constitutes a negative feedback loop that regulates DSB repair.




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Eickhoff throws first bullpen since setback

Jerad Eickhoff took his latest first step on Sunday morning at Spectrum Field. He threw a bullpen session, his first since sustaining a setback last month following carpal tunnel surgery in October.