tal

The African Continental Free Trade Area Could Boost African Agency in International Trade

10 December 2019

Tighisti Amare

Assistant Director, Africa Programme

Treasure Thembisile Maphanga

Director, Trade and Industry, African Union Commission (2012–19)
The agreement, which entered into force in May, could be a major step for Africa’s role in international trade, if the continent can overcome barriers to implementation.

2019-12-10-Niger.jpg

Delegates arrive at the closing ceremony of the African Union summit in Niger in July. Photo: Getty Images.

The entry into force of the African Continental Free Trade Area (AfCFTA) on 30 May, after only three years of negotiations, is an economic, political and diplomatic milestone for the African Union (AU) and its member states, crucial for economic growth, job creation, and making Africa a meaningful player in international trade. But the continent will have to work together to ensure that the potential benefits are fully realized.

A necessary innovation

With its advances in maintaining peace and security, abundant natural resources, high growth rates, improved linkages to global supply chains and a youthful population, Africa is emerging as a new global centre of economic growth, increasingly sought after as a partner by the world’s biggest economies. Governments from across Africa have been taking a more assertive role in international markets, including through proactive diversification of trading partners, and the continent remains a strong advocate for the multilateral trading system.

However, this is not yet reflected in outcomes. The African Union does not have observer status at the World Trade Organization, despite diplomatic efforts in the past decade. Africa has less than a three per cent share of global trade, and the growing trend towards protectionism across the global economy may only increase the vulnerability of a disunited Africa. Its fractured internal market means that trade within Africa is lower than for any other region on the globe, with intra-African trade just 18 per cent of overall exports, as compared to 70 per cent in Europe.

The AfCFTA is the continent’s tool to address the disparity between Africa’s growing economic significance and its peripheral place in the global trade system, to build a bridge between present fragmentation and future prosperity. It is an ambitious, comprehensive agreement covering trade in goods, services, investment, intellectual property rights and competition policy. It has been signed by all of Africa’s states with the exception of Eritrea.

It is the AU's Agenda 2063 flagship project, brought about by the decisions taken at the January 2012 African Union Summit to boost intra-African trade and to fast track the establishment of the Continental Free Trade Area. It builds upon ambitions enshrined in successive agreements including the Lagos Plan of Action and the Abuja Treaty. Access to new regional markets and reduced non-tariff barriers are intended to help companies scale up, driving job creation and poverty reduction, as well as attracting inward investment to even Africa’s smaller economies.

The signing in 2018 of the instruments governing the Single Air Transport Market and the Protocol on Free Movement of Persons, Right of Residence and Right of Establishment provided another step towards the gradual elimination of barriers to the movement of goods, services and people within the continent.

Tests to come

However, while progress is being made towards the ratification of the AfCFTA, much remains to be done before African countries can fully trade under its terms. The framework for implementation is still under development, and the creation of enabling infrastructure that is critical for connectivity will take time to develop and requires extensive investment.

Africa’s Future in a Changing Global Order: Africa’s Economic Diplomacy

Treasure Thembisile Maphanga talks about the international implications of the African Continental Free Trade Agreement (AfCFTA).

So, the first test for the AfCFTA will be the level to which Africa’s leaders make it a domestic priority, and whether a consensus can be maintained across the AU’s member states as the costs of implementation become clear.

There is no guarantee that the gains of free trade will be evenly distributed. They will mainly depend on the extent to which countries embrace industrialization, liberalization of their markets and opening of their borders for free movement of goods and people – policies that some incumbent leaders may be reluctant to implement. Political will to maintain a unified negotiating position with diverse stakeholders, including the private sector, will come under increasing stress.  

A second challenge is how the AfCFTA relates to already existing trade arrangements, notably with the EU.  The AU has long preferred to pursue a continent-to-continent trading arrangement instead of the bilateral Economic Partnership Agreements being sought by the EU under the African, Caribbean and Pacific (ACP) framework to which, with the exception of Algeria, Egypt, Libya, Morocco, Tunisia and South Africa, all African states belong. The signing of the AfCFTA is one important step towards making this possible.

But there are currently negotiations under the ACP to replace the Cotonou Accord (the framework governing trade between ACP members and the EU, including Economic Partnership Agreements [EPAs], that is due to expire in 2020). Negotiations on the African pillar of the accord are due to take place after the AfCFTA has entered into force. So African states and the AU will face the challenge of balancing their commitment to the ACP bloc with pursuing their own interests.

And though the AfCFTA should supersede any other agreements, the EPAs or their successors, will continue to govern day-to-day trading, in parallel to the new pan-African market. It is not yet clear how these contradictions will be reconciled.

A new role for the AU?

The AU will need to play an active role as the main interlocutor with Africa´s international trading partners, with the AfCFTA secretariat being the arbiter of internal tensions and trade disputes. The AU´s engagement at continental level has to date revolved mainly around headline political diplomacy, security and peacekeeping. With the continental free market becoming a reality, an effective pivot to economic diplomacy will be critical for growth and development.

With the AfCFTA, the AU has endeavoured to address Africa’s unsustainable position in global trade, to stimulate growth, economic diversification and jobs for its growing population. Much will depend on the commitment of African leaders to maintaining a unified negotiating position to implement the agreement and the AU’s capacity to effectively move from political to economic diplomacy.




tal

Catalytic residues, substrate specificity, and role in carbon starvation of the 2-hydroxy FA dioxygenase Mpo1 in yeast

Keisuke Mori
Apr 29, 2020; 0:jlr.RA120000803v1-jlr.RA120000803
Research Articles




tal

ANGPTL4 inactivates lipoprotein lipase by catalyzing the irreversible unfolding of LPLs hydrolase domain

Kristian K Kristensen
Apr 23, 2020; 0:jlr.ILR120000780v1-jlr.ILR120000780
Images in Lipid Research




tal

Episode 39 - The Internet of Digital Condoms (IoDC) Microsoft Teams, cyber security & InsurTech

With regular host Matt Egan off ill, David Price steps in to discuss Microsoft Teams, the government's 'new' cyber security strategy and the collision of social media and insurance companies. First up, producer Chris is on to discuss Microsoft's recent Slack rival Microsoft Teams and wether it can win the market. Then Scott Carey, online editor at Computerworld UK, talks about the government's newest strategy for taking on cyber crime. Then Charlotte Jee, editor of Techworld, talks about UK insurer Admiral's misjudged attempt to use Facebook posts to offer discounts on insurance premiums.  


See acast.com/privacy for privacy and opt-out information.




tal

Episode 52 - The Internet of Nostalgia (IoN) Nokia 3310, drone taxis and Apple on the telly

Matt Egan takes us where no other pod has dared gone before (September 2000) and asks Digital Arts Editor Neil Bennett if anyone cares that Nokia is rereleasing the famous 3310. Is it cool to rock one now? Then Techworld Audience Development Editor Christina Mercer lets us know that the future is already here with self driving drone taxis. Would you hitch a lift round Dubai on a massive quadcopter? Finally Deputy Editor at Macworld David Price ruminates on Apple's forecast foray into the world of snackable media content - will it challenge Netflix or try to buy it?  


See acast.com/privacy for privacy and opt-out information.




tal

Episode 54 - The Internet of Insecure Robots (IoIR) MWC, the government's digital strategy and pesky hackable robots

The gang muck in to discuss the hottest tech topics of the week (as is tradition). Deputy Editor of Macworld UK David Price asks Jim Martin what was hot at MWC, where phones are birthed or something. Then Techworld Online Editor Thomas MacAuley chats about the government's digital strategy. First question: does it have one? Finally Tamlin Magee, Computerworld UK's Online Editor explains how to hack a robot and why people will almost certainly use this for EVIL. Thanks for listening.  


See acast.com/privacy for privacy and opt-out information.




tal

Episode 90 - The Internet of Meaty Topics (IoMT) Digital afterlife, net neutrality and GDPR emails

Oh boy what a meaty session we have for you as Christina Mercer, Somrata Sarkar, David Price and Henry Burrell tackle three whopics (whopping topics) head on.


Somrata takes us into the sometimes scary thoughts of our own digital afterlives. Should we be worried that we'll end up as misrepresentative chat bots one day? Who will have the authority to police the companies that harvest our data?


Then Christina explains the knife edge America is on when it comes to net neutrality. Despite recent hope, there's still a chance the web across the pond will be ruthlessly metered and segmented.


Finally David asks us if we've checked our unused email accounts recently, as there might be a lot of desperate noodle companies in there begging you to stay on their mailing lists.


 

See acast.com/privacy for privacy and opt-out information.




tal

Episode 95 - The Internet of Digital Ministers (IoDM) Political turmoil, Surface Go and CaveX

Join host Scott Carey as the team dissects Tory meltdown and what it means for tech and the ministers we haven't heard of. What can they actually do to help the country? Charlotte Jee explains.


Then Henry Burrell chats on the new Microsoft Surface Go, an 'affordable' Surface tablet that actually still breaks the bank. Who is it for, and is Microsoft really chasing the iPad market?


David Price rounds up the pod with Musk Corner as everyone's favourite Twitter megalomaniac flies off to Thailand to help with a cave rescue - but should he stay out of it?

 

See acast.com/privacy for privacy and opt-out information.




tal

WITHDRAWN: Structural and mechanistic studies of hydroperoxide conversions catalyzed by a CYP74 clan epoxy alcohol synthase from amphioxus (Branchiostoma floridae) [Research Articles]

This manuscript has been withdrawn by the Author.




tal

WITHDRAWN: The Fundamental And Pathological Importance Of Oxysterol Binding Protein And Its Related Proteins [Thematic Reviews]

This article has been withdrawn by the authors as part of this review overlapped with the contents of Pietrangelo A and Ridgway ND. 2018. Cellular and Molecular Life Sciences. 75; 3079-98.




tal

ANGPTL4 inactivates lipoprotein lipase by catalyzing the irreversible unfolding of LPLs hydrolase domain [Images in Lipid Research]




tal

Catalytic residues, substrate specificity, and role in carbon starvation of the 2-hydroxy FA dioxygenase Mpo1 in yeast [Research Articles]

The yeast protein Mpo1 belongs to a protein family that is widely conserved in bacteria, fungi, protozoa, and plants, and is the only protein of this family whose function has so far been elucidated. Mpo1 is an Fe2+-dependent dioxygenase that catalyzes the α-oxidation reaction of 2-hydroxy (2-OH) long-chain FAs produced in the degradation pathway of the long-chain base phytosphingosine. However, several biochemical characteristics of Mpo1, such as its catalytic residues, membrane topology, and substrate specificity, remain unclear. Here, we report that yeast Mpo1 contains two transmembrane domains and that both its N- and C-terminal regions are exposed to the cytosol. Mutational analyses revealed that three histidine residues conserved in the Mpo1 family are especially important for Mpo1 activity, suggesting that they may be responsible for the formation of coordinate bonds with Fe2+. We found that, in addition to activity toward 2-OH long-chain FAs, Mpo1 also exhibits activity toward 2-OH very-long-chain FAs derived from the FA moiety of sphingolipids. These results indicate that Mpo1 is involved in the metabolism of long-chain to very-long-chain 2-OH FAs produced in different pathways. We noted that the growth of mpo1 cells is delayed upon carbon deprivation, suggesting that the Mpo1-mediated conversion of 2-OH FAs to non-hydroxy FAs is important for utilizing 2-OH FAs as a carbon source under carbon starvation. Our findings help to elucidate the as-yet-unknown functions and activities of other Mpo1 family members.




tal

2-Chlorofatty acids are biomarkers of sepsis mortality and mediators of barrier dysfunction in rats [Research Articles]

Sepsis is defined as the systemic, dysregulated host immune response to an infection that leads to injury to host organ systems, and, often, death. Complex interactions between pathogens and their hosts elicit microcirculatory dysfunction. Neutrophil myeloperoxidase (MPO) is critical for combating pathogens, but MPO-derived hypochlorous acid (HOCl) can react with host molecular species as well. Plasmalogens are targeted by HOCl, leading to the production of 2-chlorofatty acids (2-CLFAs). 2-CLFAs are associated with human sepsis mortality, decrease in vitroendothelial barrier function, and activate human neutrophil extracellular trap formation. Here, we sought to examine 2-CLFAs in an in vivorat sepsis model. Intraperitoneal cecal slurry sepsis with clinically relevant rescue therapies led to ~73% mortality and evidence of microcirculatory dysfunction. Plasma concentrations of 2-CLFAs assessed 8h after sepsis induction were lower in rats that survived sepsis than in non-survivors. 2-CLFA levels were elevated in kidney, liver, spleen, lung, colon and ileum in septic animals. In vivo, exogenous 2-CLFA treatments increased kidney permeability, and in in vitroexperiments 2-CLFA also increased epithelial surface expression of vascular cell adhesion molecule 1 and decreased epithelial barrier function. Collectively, these studies support a role of free 2-CLFAs as biomarkers of sepsis mortality, potentially mediated, in part, by 2-CLFA-elicited endothelial and epithelial barrier dysfunction.




tal

Supporting NHS Cybersecurity During COVID-19 is Vital

2 April 2020

Joyce Hakmeh

Senior Research Fellow, International Security Programme; Co-Editor, Journal of Cyber Policy
The current crisis is an opportunity for the UK government to show agility in how it deals with cyber threats and how it cooperates with the private sector in creating cyber resilience.

2020-04-02-NHS-nurse-tech-cyber

Nurse uses a wireless electronic tablet to order medicines from the pharmacy at The Queen Elizabeth Hospital, Birmingham, England. Photo by Christopher Furlong/Getty Images.

The World Health Organization, US Department of Health and Human Services, and hospitals in Spain, France and the Czech Republic have all suffered cyberattacks during the ongoing COVID-19 crisis.

In the Czech Republic, a successful attack targeted a hospital with one of the country’s biggest COVID-19 testing laboratories, forcing its entire IT network to shut down, urgent surgical operations to be rescheduled, and patients to be moved to nearby hospitals. The attack also delayed dozens of COVID-19 test results and affected the hospital’s data transfer and storage, affecting the healthcare the hospital could provide.

In the UK, the National Health Service (NHS) is already in crisis mode, focused on providing beds and ventilators to respond to one of the largest peacetime threats ever faced. But supporting the health sector goes beyond increasing human resources and equipment capacity.

Health services ill-prepared

Cybersecurity support, both at organizational and individual level, is critical so health professionals can carry on saving lives, safely and securely. Yet this support is currently missing and the health services may be ill-prepared to deal with the aftermath of potential cyberattacks.

When the NHS was hit by the Wannacry ransomware attack in 2017 - one of the largest cyberattacks the UK has witnessed to date – it caused massive disruption, with at least 80 of the 236 trusts across England affected and thousands of appointments and operations cancelled. Fortunately, a ‘kill-switch’ activated by a cybersecurity researcher quickly brought it to a halt.

But the UK’s National Cyber Security Centre (NCSC), has been warning for some time against a cyber attack targeting national critical infrastructure sectors, including the health sector. A similar attack, known as category one (C1) attack, could cripple the UK with devastating consequences. It could happen and we should be prepared.

Although the NHS has taken measures since Wannacry to improve cybersecurity, its enormous IT networks, legacy equipment and the overlap between the operational and information technology (OT/IT) does mean mitigating current potential threats are beyond its ability.

And the threats have radically increased. More NHS staff with access to critical systems and patient health records are increasingly working remotely. The NHS has also extended its physical presence with new premises, such as the Nightingale hospital, potentially the largest temporary hospital in the world.

Radical change frequently means proper cybersecurity protocols are not put in place. Even existing cybersecurity processes had to be side-stepped because of the outbreak, such as the decision by NHS Digital to delay its annual cybersecurity audit until September. During this audit, health and care organizations submit data security and protection toolkits to regulators setting out their cybersecurity and cyber resilience levels.

The decision to delay was made to allow the NHS organizations to focus capacity on responding to COVID-19, but cybersecurity was highlighted as a high risk, and the importance of NHS and Social Care remaining resilient to cyberattacks was stressed.

The NHS is stretched to breaking point. Expecting it to be on top of its cybersecurity during these exceptionally challenging times is unrealistic, and could actually add to the existing risk.

Now is the time where new partnerships and support models should be emerging to support the NHS and help build its resilience. Now is the time where innovative public-private partnerships on cybersecurity should be formed.

Similar to the economic package from the UK chancellor and innovative thinking on ventilator production, the government should oversee a scheme calling on the large cybersecurity capacity within the private sector to step in and assist the NHS. This support can be delivered in many different ways, but it must be mobilized swiftly.

The NCSC for instance has led the formation of the Cyber Security Information Sharing Partnership (CiSP)— a joint industry and UK government initiative to exchange cyber threat information confidentially in real time with the aim of reducing the impact of cyberattacks on UK businesses.

CiSP comprises organizations vetted by NCSC which go through a membership process before being able to join. These members could conduct cybersecurity assessment and penetration testing for NHS organizations, retrospectively assisting in implementing key security controls which may have been overlooked.

They can also help by making sure NHS remote access systems are fully patched and advising on sensible security systems and approved solutions. They can identify critical OT and legacy systems and advise on their security.

The NCSC should continue working with the NHS to enhance provision of public comprehensive guidance on cyber defence and response to potential attack. This would show they are on top of the situation, projecting confidence and reassurance.

It is often said in every crisis lies an opportunity. This is an opportunity for the UK government to show agility in how it deals with cyber threats and how it cooperates with the private sector in creating cyber resilience.

It is an opportunity to lead a much-needed cultural change showing cybersecurity should never be an afterthought.




tal

Metabolic profiling in colorectal cancer reveals signature metabolic shifts during tumorigenesis [13. Other]

Colorectal cancer (CRC) arises as the consequence of progressive changes from normal epithelial cells through polyp to tumor, and thus is an useful model for studying metabolic shift. In the present study, we studied the metabolomic profiles using high analyte specific gas chromatography/mass spectrometry (GC/MS) and liquid chromatography tandem mass spectrometry (LC/MS/MS) to attain a systems-level view of the shift in metabolism in cells progressing along the path to CRC. Colonic tissues including tumor, polyps and adjacent matched normal mucosa from 26 patients with sporadic CRC from freshly isolated resections were used for this study. The metabolic profiles were obtained using GC/MS and LC/MS/MS. Our data suggest there was a distinct profile change of a wide range of metabolites from mucosa to tumor tissues. Various amino acids and lipids in the polyps and tumors were elevated, suggesting higher energy needs for increased cellular proliferation. In contrast, significant depletion of glucose and inositol in polyps revealed that glycolysis may be critical in early tumorigenesis. In addition, the accumulation of hypoxanthine and xanthine, and the decrease of uric acid concentration, suggest that the purine biosynthesis pathway could have been substituted by the salvage pathway in CRC. Further, there was a step-wise reduction of deoxycholic acid concentration from mucosa to tumors. It appears that to gain a growth advantage, cancer cells may adopt alternate metabolic pathways in tumorigenesis and this flexibility allows them to adapt and thrive in harsh environment.




tal

Multiple hypothesis testing in proteomics: A strategy for experimental work [Invited]

In quantitative proteomics work, the differences in expression of many separate proteins are routinely examined to test for significant differences between treatments. This leads to the multiple hypothesis testing problem: when many separate tests are performed many will be significant by chance and be false positive results. Statistical methods such as the false discovery rate (FDR) method that deal with this problem have been disseminated for more than one decade. However a survey of proteomics journals shows that such tests are not widely implemented in one commonly used technique, quantitative proteomics using two-dimensional electrophoresis (2-DE). We outline a selection of multiple hypothesis testing methods, including some that are well known and some lesser known, and present a simple strategy for their use by the experimental scientist in quantitative proteomics work generally. The strategy focuses on the desirability of simultaneous use of several different methods, the choice and emphasis dependent on research priorities and the results in hand. This approach is demonstrated using case scenarios with experimental and simulated model data.




tal

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.




tal

Let's talk about the interregnum: Gramsci and the crisis of the liberal world order

7 May 2020 , Volume 96, Number 3

Milan Babic

The liberal international order (LIO) is in crisis. Numerous publications, debates and events have time and again made it clear that we are in the midst of a grand transformation of world order. While most contributions focus on either what is slowly dying (the LIO) or what might come next (China, multipolarity, chaos?), there is less analytical engagement with what lies in between those two phases of world order. Under the assumption that this period could last years or even decades, a set of analytical tools to understand this interregnum is urgently needed. This article proposes an analytical framework that builds on Gramscian concepts of crisis that will help us understand the current crisis of the LIO in a more systematic way. It addresses a gap in the literature on changing world order by elaborating three Gramsci-inspired crisis characteristics—processuality, organicity and morbidity—that sketch the current crisis landscape in a systematic way. Building on this framework, the article suggests different empirical entry points to the study of the crisis of the LIO and calls for a research agenda that takes this crisis seriously as a distinct period of changing world orders.




tal

Russia's Imperial Nostalgia: Implications for the West

Invitation Only Research Event

31 January 2020 - 11:00am to 12:30pm

Chatham House | 10 St James's Square | London | SW1Y 4LE

Event participants

Sergei Medvedev, Professor, Faculty of Social Sciences, Higher School of Economics (Moscow)

Vladimir Putin’s goal of restoring Russia’s status as a great power has led to an aggressive foreign policy and confrontation with its immediate neighbours as well as Western countries.

Sergei Medvedev, author of The Return of the Russian Leviathan, will discuss the forces shaping Russian politics and society today as well as how a nostalgia for empire – still widespread in contemporary Russia - has shaped Moscow’s foreign policy.

Attendance at this event is by invitation only.

Event attributes

Chatham House Rule

Anna Morgan

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




tal

Russia’s Human and Social Capital

Invitation Only Research Event

5 March 2020 - 9:30am to 1:00pm

Chatham House | 10 St James's Square | London | SW1Y 4LE

Event participants

Christopher Davis, Professorial Fellow, Institute of Population Ageing, University of Oxford
Samuel Greene, Director, King's Russia Institute; Reader of Russian Politics, King’s College London
Nikolai Petrov, Senior Research Fellow, Russia and Eurasia Programme, Chatham House
Natalia Zubarevich, Director, Regional Programme, Independent Institute for Social Policy

Russia’s published development agenda to 2024 focused on gaining advantage from its human capital. In reality however, issues surrounding Russia’s population remain a major challenge, considering its demographic trends, an undoubted brain drain and societal divisions.

This expert roundtable will explore the current state of – and interconnections between – human and social capital in Russia. The speakers will also address Russia’s regional disparities, migration effects and political elite dynamics and their relationship to the population at large.

Event attributes

Chatham House Rule

Anna Morgan

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




tal

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.




tal

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.­­




tal

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




tal

Problem Notes for SAS®9 - 65844: STRESS task fails with "Fatal error in PMPI_Bcast: Other MPI error, error stack: PMPI_Bcast(1478)"

In SAS  High-Performance Risk, a STRESS task might fail with a message like the following in the SAS log while the compute server is sending the ScenarioCF/Value data to the HPRisk Engine:



tal

Noncatalytic Bruton's tyrosine kinase activates PLC{gamma}2 variants mediating ibrutinib resistance in human chronic lymphocytic leukemia cells [Membrane Biology]

Treatment of patients with chronic lymphocytic leukemia (CLL) with inhibitors of Bruton's tyrosine kinase (BTK), such as ibrutinib, is limited by primary or secondary resistance to this drug. Examinations of CLL patients with late relapses while on ibrutinib, which inhibits BTK's catalytic activity, revealed several mutations in BTK, most frequently resulting in the C481S substitution, and disclosed many mutations in PLCG2, encoding phospholipase C-γ2 (PLCγ2). The PLCγ2 variants typically do not exhibit constitutive activity in cell-free systems, leading to the suggestion that in intact cells they are hypersensitive to Rac family small GTPases or to the upstream kinases spleen-associated tyrosine kinase (SYK) and Lck/Yes-related novel tyrosine kinase (LYN). The sensitivity of the PLCγ2 variants to BTK itself has remained unknown. Here, using genetically-modified DT40 B lymphocytes, along with various biochemical assays, including analysis of PLCγ2-mediated inositol phosphate formation, inositol phospholipid assessments, fluorescence recovery after photobleaching (FRAP) static laser microscopy, and determination of intracellular calcium ([Ca2+]i), we show that various CLL-specific PLCγ2 variants such as PLCγ2S707Y are hyper-responsive to activated BTK, even in the absence of BTK's catalytic activity and independently of enhanced PLCγ2 phospholipid substrate supply. At high levels of B-cell receptor (BCR) activation, which may occur in individual CLL patients, catalytically-inactive BTK restored the ability of the BCR to mediate increases in [Ca2+]i. Because catalytically-inactive BTK is insensitive to active-site BTK inhibitors, the mechanism involving the noncatalytic BTK uncovered here may contribute to preexisting reduced sensitivity or even primary resistance of CLL to these drugs.




tal

Coregulator Sin3a Promotes Postnatal Murine {beta}-Cell Fitness by Regulating Genes in Ca2+ Homeostasis, Cell Survival, Vesicle Biosynthesis, Glucose Metabolism, and Stress Response

Swi-independent 3a and 3b (Sin3a and Sin3b) are paralogous transcriptional coregulators that direct cellular differentiation, survival, and function. Here, we report that mouse Sin3a and Sin3b are co-produced in most pancreatic cells during embryogenesis but become much more enriched in endocrine cells in adults, implying continued essential roles in mature endocrine-cell function. Mice with loss of Sin3a in endocrine progenitors were normal during early postnatal stages but gradually developed diabetes before weaning. These physiological defects were preceded by the compromised survival, insulin-vesicle packaging, insulin secretion, and nutrient-induced Ca2+ influx of Sin3a-deficient β-cells. RNA-seq coupled with candidate chromatin-immunoprecipitation assays revealed several genes that could be directly regulated by Sin3a in β-cells, which modulate Ca2+/ion transport, cell survival, vesicle/membrane trafficking, glucose metabolism, and stress responses. Lastly, mice with loss of both Sin3a and Sin3b in multipotent embryonic pancreatic progenitors had significantly reduced islet-cell mass at birth, caused by decreased endocrine-progenitor production and increased β-cell death. These findings highlight the stage-specific requirements for the presumed "general" coregulators Sin3a and Sin3b in islet β-cells, with Sin3a being dispensable for differentiation but required for postnatal function and survival.




tal

Glucose-Stimulated Insulin Secretion Fundamentally Requires H2O2 Signaling by NADPH Oxidase 4

NADPH facilitates glucose-stimulated insulin secretion (GSIS) in pancreatic islet (PI) β-cells by an as yet unknown mechanism. We found NADPH oxidase, isoform-4 (NOX4), to be the major producer of cytosolic H2O2, essential for GSIS, while the increase in ATP/ADP alone was insufficient. The fast GSIS phase was absent in PIs from NOX4-null, β-cell-specific knockout mice (NOX4βKO) (not NOX2KO), and NOX4-silenced or catalase-overexpressing INS-1E cells. Lentiviral NOX4 overexpression or H2O2 rescued GSIS in PIs from NOX4βKO mice. NOX4 silencing suppressed Ca2+ oscillations and the patch-clamped ATP-sensitive potassium channel (KATP) opened more frequently at high glucose. Mitochondrial H2O2, decreasing upon GSIS, provided an alternative redox signaling when 2-oxo-isocaproate or fatty acid oxidation formed superoxide by electron-transport flavoprotein:Q-oxidoreductase. Unlike GSIS, this ceased with mitochondrial antioxidant SkQ1. Both NOX4KO and NOX4βKO strains exhibited impaired glucose tolerance and peripheral insulin resistance. Thus the redox signaling previously suggested to cause β-cell-self-checking – hypothetically induces insulin resistance when absent. In conclusion, ATP plus H2O2 elevations constitute an essential switch-on signal of insulin exocytosis for glucose and branched-chain oxoacids as secretagogues (partly for fatty acids). Redox signaling could be impaired by cytosolic antioxidants, hence those targeting mitochondria should be preferred for clinical applications to treat (pre)diabetes at any stage.




tal

Maternal Obesity and Western-Style Diet Impair Fetal and Juvenile Offspring Skeletal Muscle Insulin-Stimulated Glucose Transport in Nonhuman Primates

Infants born to mothers with obesity have a greater risk for childhood obesity and metabolic diseases; however, the underlying biological mechanisms remain poorly understood. We used a Japanese macaque model to investigate whether maternal obesity combined with a western-style diet (WSD) impairs offspring muscle insulin action. Adult females were fed a control or WSD prior to and during pregnancy through lactation, and offspring subsequently weaned to a control or WSD. Muscle glucose uptake and signaling were measured ex vivo in fetal (n=5-8/group) and juvenile offspring (n=8/group). In vivo signaling was evaluated after an insulin bolus just prior to weaning (n=4-5/group). Maternal WSD reduced insulin-stimulated glucose uptake and impaired insulin signaling at the level of Akt phosphorylation in fetal muscle. In juvenile offspring, insulin-stimulated glucose uptake was similarly reduced by both maternal and post-weaning WSD and corresponded to modest reductions in insulin-stimulated Akt phosphorylation relative to controls. We conclude that maternal WSD leads to a persistent decrease in offspring muscle insulin-stimulated glucose uptake even in the absence of increased offspring adiposity or markers of systemic insulin resistance. Switching offspring to a healthy diet did not reverse the effects of maternal WSD on muscle insulin action suggesting earlier interventions may be warranted.




tal

Certain ortho-hydroxylated brominated ethers are promiscuous kinase inhibitors that impair neuronal signaling and neurodevelopmental processes [Cell Biology]

The developing nervous system is remarkably sensitive to environmental signals, including disruptive toxins, such as polybrominated diphenyl ethers (PBDEs). PBDEs are an environmentally pervasive class of brominated flame retardants whose neurodevelopmental toxicity mechanisms remain largely unclear. Using dissociated cortical neurons from embryonic Rattus norvegicus, we found here that chronic exposure to 6-OH–BDE-47, one of the most prevalent hydroxylated PBDE metabolites, suppresses both spontaneous and evoked neuronal electrical activity. On the basis of our previous work on mitogen-activated protein kinase (MAPK)/extracellular signal-related kinase (ERK) (MEK) biology and our observation that 6-OH–BDE-47 is structurally similar to kinase inhibitors, we hypothesized that certain hydroxylated PBDEs mediate neurotoxicity, at least in part, by impairing the MEK–ERK axis of MAPK signal transduction. We tested this hypothesis on three experimental platforms: 1) in silico, where modeling ligand–protein docking suggested that 6-OH–BDE-47 is a promiscuous ATP-competitive kinase inhibitor; 2) in vitro in dissociated neurons, where 6-OH–BDE-47 and another specific hydroxylated BDE metabolite similarly impaired phosphorylation of MEK/ERK1/2 and activity-induced transcription of a neuronal immediate early gene; and 3) in vivo in Drosophila melanogaster, where developmental exposures to 6-OH–BDE-47 and a MAPK inhibitor resulted in offspring displaying similarly increased frequency of mushroom-body β–lobe midline crossing, a metric of axonal guidance. Taken together, our results support that certain ortho-hydroxylated PBDE metabolites are promiscuous kinase inhibitors and can cause disruptions of critical neurodevelopmental processes, including neuronal electrical activity, pre-synaptic functions, MEK–ERK signaling, and axonal guidance.




tal

The cytochrome P450 enzyme CYP24A1 increases proliferation of mutant KRAS-dependent lung adenocarcinoma independent of its catalytic activity [Cell Biology]

We previously reported that overexpression of cytochrome P450 family 24 subfamily A member 1 (CYP24A1) increases lung cancer cell proliferation by activating RAS signaling and that CYP24A1 knockdown inhibits tumor growth. However, the mechanism of CYP24A1-mediated cancer cell proliferation remains unclear. Here, we conducted cell synchronization and biochemical experiments in lung adenocarcinoma cells, revealing a link between CYP24A1 and anaphase-promoting complex (APC), a key cell cycle regulator. We demonstrate that CYP24A1 expression is cell cycle–dependent; it was higher in the G2-M phase and diminished upon G1 entry. CYP24A1 has a functional destruction box (D-box) motif that allows binding with two APC adaptors, CDC20-homologue 1 (CDH1) and cell division cycle 20 (CDC20). Unlike other APC substrates, however, CYP24A1 acted as a pseudo-substrate, inhibiting CDH1 activity and promoting mitotic progression. Conversely, overexpression of a CYP24A1 D-box mutant compromised CDH1 binding, allowing CDH1 hyperactivation, thereby hastening degradation of its substrates cyclin B1 and CDC20, and accumulation of the CDC20 substrate p21, prolonging mitotic exit. These activities also occurred with a CYP24A1 isoform 2 lacking the catalytic cysteine (Cys-462), suggesting that CYP24A1's oncogenic potential is independent of its catalytic activity. CYP24A1 degradation reduced clonogenic survival of mutant KRAS-driven lung cancer cells, and calcitriol treatment increased CYP24A1 levels and tumor burden in Lsl-KRASG12D mice. These results disclose a catalytic activity-independent growth-promoting role of CYP24A1 in mutant KRAS-driven lung cancer. This suggests that CYP24A1 could be therapeutically targeted in lung cancers in which its expression is high.




tal

The heme-regulatory motifs of heme oxygenase-2 contribute to the transfer of heme to the catalytic site for degradation [Protein Structure and Folding]

Heme-regulatory motifs (HRMs) are present in many proteins that are involved in diverse biological functions. The C-terminal tail region of human heme oxygenase-2 (HO2) contains two HRMs whose cysteine residues form a disulfide bond; when reduced, these cysteines are available to bind Fe3+-heme. Heme binding to the HRMs occurs independently of the HO2 catalytic active site in the core of the protein, where heme binds with high affinity and is degraded to biliverdin. Here, we describe the reversible, protein-mediated transfer of heme between the HRMs and the HO2 core. Using hydrogen-deuterium exchange (HDX)-MS to monitor the dynamics of HO2 with and without Fe3+-heme bound to the HRMs and to the core, we detected conformational changes in the catalytic core only in one state of the catalytic cycle—when Fe3+-heme is bound to the HRMs and the core is in the apo state. These conformational changes were consistent with transfer of heme between binding sites. Indeed, we observed that HRM-bound Fe3+-heme is transferred to the apo-core either upon independent expression of the core and of a construct spanning the HRM-containing tail or after a single turnover of heme at the core. Moreover, we observed transfer of heme from the core to the HRMs and equilibration of heme between the core and HRMs. We therefore propose an Fe3+-heme transfer model in which HRM-bound heme is readily transferred to the catalytic site for degradation to facilitate turnover but can also equilibrate between the sites to maintain heme homeostasis.




tal

Glycation-mediated inter-protein cross-linking is promoted by chaperone-client complexes of {alpha}-crystallin: Implications for lens aging and presbyopia [Glycobiology and Extracellular Matrices]

Lens proteins become increasingly cross-linked through nondisulfide linkages during aging and cataract formation. One mechanism that has been implicated in this cross-linking is glycation through formation of advanced glycation end products (AGEs). Here, we found an age-associated increase in stiffness in human lenses that was directly correlated with levels of protein–cross-linking AGEs. α-Crystallin in the lens binds to other proteins and prevents their denaturation and aggregation through its chaperone-like activity. Using a FRET-based assay, we examined the stability of the αA-crystallin–γD-crystallin complex for up to 12 days and observed that this complex is stable in PBS and upon incubation with human lens–epithelial cell lysate or lens homogenate. Addition of 2 mm ATP to the lysate or homogenate did not decrease the stability of the complex. We also generated complexes of human αA-crystallin or αB-crystallin with alcohol dehydrogenase or citrate synthase by applying thermal stress. Upon glycation under physiological conditions, the chaperone–client complexes underwent greater extents of cross-linking than did uncomplexed protein mixtures. LC-MS/MS analyses revealed that the levels of cross-linking AGEs were significantly higher in the glycated chaperone–client complexes than in glycated but uncomplexed protein mixtures. Mouse lenses subjected to thermal stress followed by glycation lost resilience more extensively than lenses subjected to thermal stress or glycation alone, and this loss was accompanied by higher protein cross-linking and higher cross-linking AGE levels. These results uncover a protein cross-linking mechanism in the lens and suggest that AGE-mediated cross-linking of α-crystallin–client complexes could contribute to lens aging and presbyopia.




tal

Affinity maturation, humanization, and co-crystallization of a rabbit anti-human ROR2 monoclonal antibody for therapeutic applications [Immunology]

Antibodies are widely used as cancer therapeutics, but their current use is limited by the low number of antigens restricted to cancer cells. A receptor tyrosine kinase, receptor tyrosine kinase-like orphan receptor 2 (ROR2), is normally expressed only during embryogenesis and is tightly down-regulated in postnatal healthy tissues. However, it is up-regulated in a diverse set of hematologic and solid malignancies, thus ROR2 represents a candidate antigen for antibody-based cancer therapy. Here we describe the affinity maturation and humanization of a rabbit mAb that binds human and mouse ROR2 but not human ROR1 or other human cell-surface antigens. Co-crystallization of the parental rabbit mAb in complex with the human ROR2 kringle domain (hROR2-Kr) guided affinity maturation by heavy-chain complementarity-determining region 3 (HCDR3)-focused mutagenesis and selection. The affinity-matured rabbit mAb was then humanized by complementarity-determining region (CDR) grafting and framework fine tuning and again co-crystallized with hROR2-Kr. We show that the affinity-matured and humanized mAb retains strong affinity and specificity to ROR2 and, following conversion to a T cell–engaging bispecific antibody, has potent cytotoxicity toward ROR2-expressing cells. We anticipate that this humanized affinity-matured mAb will find application for antibody-based cancer therapy of ROR2-expressing neoplasms.




tal

Structural basis of substrate recognition and catalysis by fucosyltransferase 8 [Protein Structure and Folding]

Fucosylation of the innermost GlcNAc of N-glycans by fucosyltransferase 8 (FUT8) is an important step in the maturation of complex and hybrid N-glycans. This simple modification can dramatically affect the activities and half-lives of glycoproteins, effects that are relevant to understanding the invasiveness of some cancers, development of mAb therapeutics, and the etiology of a congenital glycosylation disorder. The acceptor substrate preferences of FUT8 are well-characterized and provide a framework for understanding N-glycan maturation in the Golgi; however, the structural basis of these substrate preferences and the mechanism through which catalysis is achieved remain unknown. Here we describe several structures of mouse and human FUT8 in the apo state and in complex with GDP, a mimic of the donor substrate, and with a glycopeptide acceptor substrate at 1.80–2.50 Å resolution. These structures provide insights into a unique conformational change associated with donor substrate binding, common strategies employed by fucosyltransferases to coordinate GDP, features that define acceptor substrate preferences, and a likely mechanism for enzyme catalysis. Together with molecular dynamics simulations, the structures also revealed how FUT8 dimerization plays an important role in defining the acceptor substrate-binding site. Collectively, this information significantly builds on our understanding of the core fucosylation process.




tal

Muscle Weakness: A Progressive Late Complication in Diabetic Distal Symmetric Polyneuropathy

Christer S. Andreassen
Mar 1, 2006; 55:806-812
Complications




tal

Environmental Triggers and Determinants of Type 1 Diabetes

Mikael Knip
Dec 1, 2005; 54:S125-S136
Section IV: Polygenic Disease and Environment




tal

One Week of Bed Rest Leads to Substantial Muscle Atrophy and Induces Whole-Body Insulin Resistance in the Absence of Skeletal Muscle Lipid Accumulation

Marlou L. Dirks
Oct 1, 2016; 65:2862-2875
Metabolism




tal

Sandoval instrumental in recruiting FA friends

Pablo Sandoval said he recruited his friends Gerardo Parra and Yangervis Solarte to the Giants in the offseason.




tal

Chemoprevention of colorectal cancer in individuals with previous colorectal neoplasia: systematic review and network meta-analysis




tal

Trade and Environmental Sustainability: Towards Greater Coherence

Invitation Only Research Event

27 February 2020 - 8:30am to 10:00am

Graduate Institute Geneva | Chemin Eugène-Rigot | Geneva | 1672 1211

The WTO Ministerial Conference in June 2020 presents a critical opportunity to move ahead on better alignment of trade and environmental sustainability objectives, policymaking and governance. In light of the challenges facing the WTO, meaningful efforts to address environmental sustainability would also help to reinvigorate the organization and strengthen its relevance. 

In this context, the meeting aims to advance discussion on two questions: How can the multilateral trade system better contribute to meeting the UN Sustainable Development Goals and the Paris climate goals? What priorities and tangible outcomes on trade and environmental sustainability should be advanced at the WTO Ministerial Conference in Nur Sultan in June and beyond?

The event will be hosted by the US and the Americas Programme and the Hoffmann Centre for Sustainable Resource Economy at Chatham House in partnership with both the Global Governance Centre and the Centre for Trade and Economic Integration at the Graduate Institute, Geneva.

We gratefully acknowledge the financial support for this event from the Chatham House Global Trade Policy Forum’s founding partner AIG and supporting partners Clifford Chance LLP, Diageo plc and EY, and on the Graduate Institute side, from the government of Switzerland.

Event attributes

Chatham House Rule

US and Americas Programme




tal

Covid-19: Doctors face shortages of vital drugs, gases, and therapeutics, survey finds




tal

Covid-19: Projections of mortality in the US rise as states open up




tal

Covid-19: UK death toll overtakes Italy’s to become worst in Europe




tal

Covid-19: Nightingale hospitals set to shut down after seeing few patients




tal

Windrush Film Festival to feature young talent

Emerging film-makers will have the opportunity to produce a short film based on the theme ‘My Windrush Story – What Windrush Means to Me’ as part of the Windrush Caribbean Film Festival (WCFF), which will be held later this year as part of Black...




tal

Russia's Imperial Nostalgia: Implications for the West

Invitation Only Research Event

31 January 2020 - 11:00am to 12:30pm

Chatham House | 10 St James's Square | London | SW1Y 4LE

Event participants

Sergei Medvedev, Professor, Faculty of Social Sciences, Higher School of Economics (Moscow)

Vladimir Putin’s goal of restoring Russia’s status as a great power has led to an aggressive foreign policy and confrontation with its immediate neighbours as well as Western countries.

Sergei Medvedev, author of The Return of the Russian Leviathan, will discuss the forces shaping Russian politics and society today as well as how a nostalgia for empire – still widespread in contemporary Russia - has shaped Moscow’s foreign policy.

Attendance at this event is by invitation only.

Event attributes

Chatham House Rule

Anna Morgan

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




tal

Russia’s Human and Social Capital

Invitation Only Research Event

5 March 2020 - 9:30am to 1:00pm

Chatham House | 10 St James's Square | London | SW1Y 4LE

Event participants

Christopher Davis, Professorial Fellow, Institute of Population Ageing, University of Oxford
Samuel Greene, Director, King's Russia Institute; Reader of Russian Politics, King’s College London
Nikolai Petrov, Senior Research Fellow, Russia and Eurasia Programme, Chatham House
Natalia Zubarevich, Director, Regional Programme, Independent Institute for Social Policy

Russia’s published development agenda to 2024 focused on gaining advantage from its human capital. In reality however, issues surrounding Russia’s population remain a major challenge, considering its demographic trends, an undoubted brain drain and societal divisions.

This expert roundtable will explore the current state of – and interconnections between – human and social capital in Russia. The speakers will also address Russia’s regional disparities, migration effects and political elite dynamics and their relationship to the population at large.

Event attributes

Chatham House Rule

Anna Morgan

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




tal

Graphic showing the role of satellite images in tracking environmental damage

1 June 2012 , Volume 68, Number 4

Eyes in the skies keeping watch on a planet under stress. Click on the PDF link to view the graphic


Graphic




tal

Winston McAnuff the Electric Dread talks ‘Inna De Yard’

THE NOMENCLATURE ‘roots reggae artiste’ takes on a whole new classification when referencing singer Winston McAnuff. An elder statesman who has a fixation with an instrument which retains its genesis in the Church – the accordion – McAnuff, also...




tal

Isha Blender opens up about loss of her son - Shares the ­heartbreaking tale in latest track ‘I Wish’

REGGAE ARTISTE Isha Blender is still coming to terms with the loss of her son, Josiah, on January 5, a mere two days after she celebrated her birthday. The daughter of legendary crooner Everton Blender said the death of a child can be one of the...