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Problem Notes for SAS®9 - 65903: You see a "java.lang.IllegalArgumentException" error in the log file when you use the IFRS9_Cycle workflow template in SAS Solution for IFRS 9

The problem occurs on a content release on the SAS Risk Governance Framework.




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Problem Notes for SAS®9 - 65572: The length of a string variable might be longer than specified with the MAX_CHAR_LEN= option

When you read in a BigQuery table, the length of string variables might be longer than the length specified with the MAX_CHAR_LEN= option when running your SAS software   with UTF-8. By




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Uniform patch to mark 150 years of pro baseball

All 30 Major League teams will wear special "MLB 150" patches on their uniforms for the entire 2019 season in honor of the 150th anniversary of the 1869 Cincinnati Red Stockings, the first openly all-salaried professional baseball team.




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Life without air [Lipids]

An early exposure to lipid biochemistry in the laboratory of Konrad Bloch resulted in a fascination with the biosynthesis, structures, and functions of bacterial lipids. The discovery of plasmalogens (1-alk-1'-enyl, 2-acyl phospholipids) in anaerobic Gram-positive bacteria led to studies on the physical chemistry of these lipids and the cellular regulation of membrane lipid polymorphism in bacteria. Later studies in several laboratories showed that the formation of the alk-1-enyl ether bond involves an aerobic process in animal cells and thus is fundamentally different from that in anaerobic organisms. Our work provides evidence for an anaerobic process in which plasmalogens are formed from their corresponding diacyl lipids. Studies on the roles of phospholipases in Listeria monocytogenes revealed distinctions between its phospholipases and those previously discovered in other bacteria and showed how the Listeria enzymes are uniquely fitted to the intracellular lifestyle of this significant human pathogen.




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Empagliflozin Ameliorates Obesity-Related Cardiac Dysfunction by Regulating Sestrin2-Mediated AMPK-mTOR Signaling and Redox Homeostasis in High-Fat Induced Obese Mice

Sodium glucose co-transporter-2 inhibitors (SGLT2i) have favorable cardiovascular outcomes in diabetic patients. However, whether SGLT2i can improve obesity-related cardiac dysfunction is unknown. Sestrin2 is a novel stress-inducible protein that regulates AMPK-mTOR and suppresses oxidative damage. The aim of this study was to determine whether empagliflozin (EMPA) improves obesity-related cardiac dysfunction via regulating Sestrin2-mediated pathways in diet-induced obesity. C57BL/6J mice and Sestrin2 knockout mice were fed a high-fat diet (HFD) for 12 weeks and then treated with or without EMPA (10 mg/kg) for 8 weeks. Treating HFD-fed C57BL/6J mice with EMPA reduced body weight, whole-body fat, and improved metabolic disorders. Furthermore, EMPA improved myocardial hypertrophy/fibrosis and cardiac function, and reduced cardiac fat accumulation and mitochondria injury. Additionally, EMPA significantly augmented Sestrin2 levels, increased AMPK and eNOS phosphorylation, but inhibited Akt and mTOR phosphorylation. These beneficial effects were partially attenuated in HFD-fed Sestrin2 knockout mice. Intriguingly, EMPA treatment enhanced the Nrf2/HO-1-mediated oxidative stress response, suggesting antioxidant and anti-inflammatory activity. Thus, EMPA improved obesity-related cardiac dysfunction via regulating Sestrin2-mediated AMPK-mTOR signaling and maintaining redox homeostasis. These findings provide a novel mechanism for the cardiovascular protection of SGLT2i in obesity.




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Motifs of Three HLA-DQ Amino Acid Residues ({alpha}44, {beta}57, {beta}135) Capture Full Association with the Risk of Type 1 Diabetes in DQ2 and DQ8 Children

HLA-DQA1 and -DQB1 are strongly associated with type 1 diabetes (T1D), and DQ8.1 and DQ2.5 are major risk haplotypes. Next generation targeted sequencing of HLA-DQA1 and -DQB1 in Swedish newly diagnosed 1-18 year-old patients (n=962) and controls (n=636) was used to construct abbreviated DQ haplotypes, converted into amino acid (AA) residues, and assessed for their associations with T1D. A hierarchically-organized haplotype (HOH) association analysis, allowed 45 unique DQ haplotypes to be categorized into seven clusters. The DQ8/9 cluster included two DQ8.1 risk and the DQ9 resistant haplotypes, and the DQ2 cluster, included the DQ2.5 risk and DQ2.2 resistant haplotypes. Within each cluster, HOH found residues α44Q (OR 3.29, p=2.38*10-85 ) and β57A (OR 3.44, p=3.80*10-84) to be associated with T1D in the DQ8/9 cluster representing all ten residues (α22, α23, α44, α49, α51, α53, α54, α73, α184, β57) due to complete linkage-disequilibrium (LD) of α44 with eight such residues. Within the DQ2 cluster and due to LD, HOH analysis found α44C and β135D to share the risk for T1D (OR 2.10, p=1.96*10-20). The motif "QAD" of α44, β57, and β135 captured the T1D risk association of DQ8.1 (OR 3.44, p=3.80*10-84), the corresponding motif "CAD" captured the risk association of DQ2.5 (OR 2.10, p=1.96*10-20). Two risk associations were related to GADA and IA-2A, but in opposite directions. "CAD" was positively associated with GADA (OR 1.56; p=6.35*10-8) but negatively with IA-2A (OR 0.59, p= 6.55*10-11). "QAD" was negatively associated with GADA (OR 0.88; p= 3.70*10-3) but positively with IA-2A (OR 1.64; p= 2.40*10-14), despite a single difference at α44. The residues are found in and around anchor pockets 1 and 9, as potential TCR contacts, in the areas for CD4 binding and putative homodimer formation. The identification of three HLA-DQ AA (α44, β57, β135) conferring T1D risk should sharpen functional and translational studies.




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Nutrient-Induced Metabolic Stress, Adaptation, Detoxification, and Toxicity in the Pancreatic {beta}-Cell

Paraphrasing the Swiss physician and father of toxicology Paracelsus (1493–1541) on chemical agents used as therapeutics, "the dose makes the poison," it is now realized that this aptly applies to the calorigenic nutrients. The case here is the pancreatic islet β-cell presented with excessive levels of nutrients such as glucose, lipids, and amino acids. The short-term effects these nutrients exert on the β-cell are enhanced insulin biosynthesis and secretion and changes in glucose sensitivity. However, chronic fuel surfeit triggers additional compensatory and adaptive mechanisms by β-cells to cope with the increased insulin demand or to protect itself. When these mechanisms fail, toxicity due to the nutrient surplus ensues, leading to β-cell dysfunction, dedifferentiation, and apoptosis. The terms glucotoxicity, lipotoxicity, and glucolipotoxicity have been widely used, but there is some confusion as to what they mean precisely and which is most appropriate for a given situation. Here we address the gluco-, lipo-, and glucolipo-toxicities in β-cells by assessing the evidence both for and against each of them. We also discuss potential mechanisms and defend the view that many of the identified "toxic" effects of nutrient excess, which may also include amino acids, are in fact beneficial adaptive processes. In addition, candidate fuel-excess detoxification pathways are evaluated. Finally, we propose that a more general term should be used for the in vivo situation of overweight-associated type 2 diabetes reflecting both the adaptive and toxic processes to mixed calorigenic nutrients excess: "nutrient-induced metabolic stress" or, in brief, "nutri-stress."




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Cell-specific expression of the transcriptional regulator RHAMM provides a timing mechanism that controls appropriate wound re-epithelialization [Glycobiology and Extracellular Matrices]

Prevention of aberrant cutaneous wound repair and appropriate regeneration of an intact and functional integument require the coordinated timing of fibroblast and keratinocyte migration. Here, we identified a mechanism whereby opposing cell-specific motogenic functions of a multifunctional intracellular and extracellular protein, the receptor for hyaluronan-mediated motility (RHAMM), coordinates fibroblast and keratinocyte migration speed and ensures appropriate timing of excisional wound closure. We found that, unlike in WT mice, in Rhamm-null mice, keratinocyte migration initiates prematurely in the excisional wounds, resulting in wounds that have re-surfaced before the formation of normal granulation tissue, leading to a defective epidermal architecture. We also noted aberrant keratinocyte and fibroblast migration in the Rhamm-null mice, indicating that RHAMM suppresses keratinocyte motility but increases fibroblast motility. This cell context–dependent effect resulted from cell-specific regulation of extracellular signal-regulated kinase 1/2 (ERK1/2) activation and expression of a RHAMM target gene encoding matrix metalloprotease 9 (MMP-9). In fibroblasts, RHAMM promoted ERK1/2 activation and MMP-9 expression, whereas in keratinocytes, RHAMM suppressed these activities. In keratinocytes, loss of RHAMM function or expression promoted epidermal growth factor receptor–regulated MMP-9 expression via ERK1/2, which resulted in cleavage of the ectodomain of the RHAMM partner protein CD44 and thereby increased keratinocyte motility. These results identify RHAMM as a key factor that integrates the timing of wound repair by controlling cell migration.




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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.




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SUMOylation of the transcription factor ZFHX3 at Lys-2806 requires SAE1, UBC9, and PIAS2 and enhances its stability and function in cell proliferation [Protein Synthesis and Degradation]

SUMOylation is a posttranslational modification (PTM) at a lysine residue and is crucial for the proper functions of many proteins, particularly of transcription factors, in various biological processes. Zinc finger homeobox 3 (ZFHX3), also known as AT motif-binding factor 1 (ATBF1), is a large transcription factor that is active in multiple pathological processes, including atrial fibrillation and carcinogenesis, and in circadian regulation and development. We have previously demonstrated that ZFHX3 is SUMOylated at three or more lysine residues. Here, we investigated which enzymes regulate ZFHX3 SUMOylation and whether SUMOylation modulates ZFHX3 stability and function. We found that SUMO1, SUMO2, and SUMO3 each are conjugated to ZFHX3. Multiple lysine residues in ZFHX3 were SUMOylated, but Lys-2806 was the major SUMOylation site, and we also found that it is highly conserved among ZFHX3 orthologs from different animal species. Using molecular analyses, we identified the enzymes that mediate ZFHX3 SUMOylation; these included SUMO1-activating enzyme subunit 1 (SAE1), an E1-activating enzyme; SUMO-conjugating enzyme UBC9 (UBC9), an E2-conjugating enzyme; and protein inhibitor of activated STAT2 (PIAS2), an E3 ligase. Multiple analyses established that both SUMO-specific peptidase 1 (SENP1) and SENP2 deSUMOylate ZFHX3. SUMOylation at Lys-2806 enhanced ZFHX3 stability by interfering with its ubiquitination and proteasomal degradation. Functionally, Lys-2806 SUMOylation enabled ZFHX3-mediated cell proliferation and xenograft tumor growth of the MDA-MB-231 breast cancer cell line. These findings reveal the enzymes involved in, and the functional consequences of, ZFHX3 SUMOylation, insights that may help shed light on ZFHX3's roles in various cellular and pathophysiological processes.




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Inhibition of glycosphingolipid biosynthesis reverts multidrug resistance by differentially modulating ABC transporters in chronic myeloid leukemias [Cell Biology]

Multidrug resistance (MDR) in cancer arises from cross-resistance to structurally- and functionally-divergent chemotherapeutic drugs. In particular, MDR is characterized by increased expression and activity of ATP-binding cassette (ABC) superfamily transporters. Sphingolipids are substrates of ABC proteins in cell signaling, membrane biosynthesis, and inflammation, for example, and their products can favor cancer progression. Glucosylceramide (GlcCer) is a ubiquitous glycosphingolipid (GSL) generated by glucosylceramide synthase, a key regulatory enzyme encoded by the UDP-glucose ceramide glucosyltransferase (UGCG) gene. Stressed cells increase de novo biosynthesis of ceramides, which return to sub-toxic levels after UGCG mediates incorporation into GlcCer. Given that cancer cells seem to mobilize UGCG and have increased GSL content for ceramide clearance, which ultimately contributes to chemotherapy failure, here we investigated how inhibition of GSL biosynthesis affects the MDR phenotype of chronic myeloid leukemias. We found that MDR is associated with higher UGCG expression and with a complex GSL profile. UGCG inhibition with the ceramide analog d-threo-1-(3,4,-ethylenedioxy)phenyl-2-palmitoylamino-3-pyrrolidino-1-propanol (EtDO-P4) greatly reduced GSL and monosialotetrahexosylganglioside levels, and co-treatment with standard chemotherapeutics sensitized cells to mitochondrial membrane potential loss and apoptosis. ABC subfamily B member 1 (ABCB1) expression was reduced, and ABCC-mediated efflux activity was modulated by competition with nonglycosylated ceramides. Consistently, inhibition of ABCC-mediated transport reduced the efflux of exogenous C6-ceramide. Overall, UGCG inhibition impaired the malignant glycophenotype of MDR leukemias, which typically overcomes drug resistance through distinct mechanisms. This work sheds light on the involvement of GSL in chemotherapy failure, and its findings suggest that targeted GSL modulation could help manage MDR leukemias.




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The testis-specific LINC component SUN3 is essential for sperm head shaping during mouse spermiogenesis [Cell Biology]

Sperm head shaping is a key event in spermiogenesis and is tightly controlled via the acrosome–manchette network. Linker of nucleoskeleton and cytoskeleton (LINC) complexes consist of Sad1 and UNC84 domain–containing (SUN) and Klarsicht/ANC-1/Syne-1 homology (KASH) domain proteins and form conserved nuclear envelope bridges implicated in transducing mechanical forces from the manchette to sculpt sperm nuclei into a hook-like shape. However, the role of LINC complexes in sperm head shaping is still poorly understood. Here we assessed the role of SUN3, a testis-specific LINC component harboring a conserved SUN domain, in spermiogenesis. We show that CRISPR/Cas9-generated Sun3 knockout male mice are infertile, displaying drastically reduced sperm counts and a globozoospermia-like phenotype, including a missing, mislocalized, or fragmented acrosome, as well as multiple defects in sperm flagella. Further examination revealed that the sperm head abnormalities are apparent at step 9 and that the sperm nuclei fail to elongate because of the absence of manchette microtubules and perinuclear rings. These observations indicate that Sun3 deletion likely impairs the ability of the LINC complex to transduce the cytoskeletal force to the nuclear envelope, required for sperm head elongation. We also found that SUN3 interacts with SUN4 in mouse testes and that the level of SUN4 proteins is drastically reduced in Sun3-null mice. Altogether, our results indicate that SUN3 is essential for sperm head shaping and male fertility, providing molecular clues regarding the underlying pathology of the globozoospermia-like phenotype.




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Structural basis of specific inhibition of extracellular activation of pro- or latent myostatin by the monoclonal antibody SRK-015 [Molecular Biophysics]

Myostatin (or growth/differentiation factor 8 (GDF8)) is a member of the transforming growth factor β superfamily of growth factors and negatively regulates skeletal muscle growth. Its dysregulation is implicated in muscle wasting diseases. SRK-015 is a clinical-stage mAb that prevents extracellular proteolytic activation of pro- and latent myostatin. Here we used integrated structural and biochemical approaches to elucidate the molecular mechanism of antibody-mediated neutralization of pro-myostatin activation. The crystal structure of pro-myostatin in complex with 29H4-16 Fab, a high-affinity variant of SRK-015, at 2.79 Å resolution revealed that the antibody binds to a conformational epitope in the arm region of the prodomain distant from the proteolytic cleavage sites. This epitope is highly sequence-divergent, having only limited similarity to other closely related members of the transforming growth factor β superfamily. Hydrogen/deuterium exchange MS experiments indicated that antibody binding induces conformational changes in pro- and latent myostatin that span the arm region, the loops contiguous to the protease cleavage sites, and the latency-associated structural elements. Moreover, negative-stain EM with full-length antibodies disclosed a stable, ring-like antigen–antibody structure in which the two Fab arms of a single antibody occupy the two arm regions of the prodomain in the pro- and latent myostatin homodimers, suggesting a 1:1 (antibody:myostatin homodimer) binding stoichiometry. These results suggest that SRK-015 binding stabilizes the latent conformation and limits the accessibility of protease cleavage sites within the prodomain. These findings shed light on approaches that specifically block the extracellular activation of growth factors by targeting their precursor forms.




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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.




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Structural and mutational analyses of the bifunctional arginine dihydrolase and ornithine cyclodeaminase AgrE from the cyanobacterium Anabaena [Enzymology]

In cyanobacteria, metabolic pathways that use the nitrogen-rich amino acid arginine play a pivotal role in nitrogen storage and mobilization. The N-terminal domains of two recently identified bacterial enzymes: ArgZ from Synechocystis and AgrE from Anabaena, have been found to contain an arginine dihydrolase. This enzyme provides catabolic activity that converts arginine to ornithine, resulting in concomitant release of CO2 and ammonia. In Synechocystis, the ArgZ-mediated ornithine–ammonia cycle plays a central role in nitrogen storage and remobilization. The C-terminal domain of AgrE contains an ornithine cyclodeaminase responsible for the formation of proline from ornithine and ammonia production, indicating that AgrE is a bifunctional enzyme catalyzing two sequential reactions in arginine catabolism. Here, the crystal structures of AgrE in three different ligation states revealed that it has a tetrameric conformation, possesses a binding site for the arginine dihydrolase substrate l-arginine and product l-ornithine, and contains a binding site for the coenzyme NAD(H) required for ornithine cyclodeaminase activity. Structure–function analyses indicated that the structure and catalytic mechanism of arginine dihydrolase in AgrE are highly homologous with those of a known bacterial arginine hydrolase. We found that in addition to other active-site residues, Asn-71 is essential for AgrE's dihydrolase activity. Further analysis suggested the presence of a passage for substrate channeling between the two distinct AgrE active sites, which are situated ∼45 Å apart. These results provide structural and functional insights into the bifunctional arginine dihydrolase–ornithine cyclodeaminase enzyme AgrE required for arginine catabolism in Anabaena.




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A Phenotypic Screen Identifies Calcium Overload as a Key Mechanism of {beta}-Cell Glucolipotoxicity

Jennifer Vogel
May 1, 2020; 69:1032-1041
Pharmacology and Therapeutics




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Type 2 Diabetes: Demystifying the Global Epidemic

Ranjit Unnikrishnan
Jun 1, 2017; 66:1432-1442
Perspectives in Diabetes




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Mechanisms of Pancreatic {beta}-Cell Death in Type 1 and Type 2 Diabetes: Many Differences, Few Similarities

Miriam Cnop
Dec 1, 2005; 54:S97-S107
Section III: Inflammation and beta-Cell Death




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The Pathobiology of Diabetic Complications: A Unifying Mechanism

Michael Brownlee
Jun 1, 2005; 54:1615-1625
Banting Lecture 2004




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Differentiation of Diabetes by Pathophysiology, Natural History, and Prognosis

Jay S. Skyler
Feb 1, 2017; 66:241-255
Perspectives in Diabetes




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Correction: A dual druggable genome-wide siRNA and compound library screening approach identifies modulators of parkin recruitment to mitochondria. [Additions and Corrections]

VOLUME 295 (2020) PAGES 3285–3300An incorrect graph was used in Fig. 5C. This error has now been corrected. Additionally, some of the statistics reported in the legend and text referring to Fig. 5C were incorrect. The F statistics for Fig. 5C should state Fken(3,16) = 7.454, p < 0.01; FCCCP(1,16) = 102.9, p < 0.0001; Finteraction(3,16) = 7.480, p < 0.01. This correction does not affect the results or conclusions of this work.jbc;295/17/5835/F5F1F5Figure 5C.




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Correction: Comparative structure-function analysis of bromodomain and extraterminal motif (BET) proteins in a gene-complementation system. [Additions and Corrections]

VOLUME 295 (2020) PAGES 1898–1914Yichen Zhong's name was misspelled. The correct spelling is shown above.




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1 player (Bryce?) makes difference, Baer says

Twenty-seven years after signing Barry Bonds to a then-record free-agent contract, the Giants are in the market for yet another superstar outfielder. San Francisco's interest in Bryce Harper remained a prominent topic of conversation during Saturday's FanFest at Oracle Park, with CEO Larry Baer weighing in on the potential franchise-altering benefits of landing a marquee player.




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Uniform patch to mark 150 years of pro baseball

All 30 Major League teams will wear special "MLB 150" patches on their uniforms for the entire 2019 season in honor of the 150th anniversary of the 1869 Cincinnati Red Stockings, the first openly all-salaried professional baseball team.




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Role of phospholipid synthesis in the development and differentiation of malaria parasites in the blood [Microbiology]

The life cycle of malaria parasites in both their mammalian host and mosquito vector consists of multiple developmental stages that ensure proper replication and progeny survival. The transition between these stages is fueled by nutrients scavenged from the host and fed into specialized metabolic pathways of the parasite. One such pathway is used by Plasmodium falciparum, which causes the most severe form of human malaria, to synthesize its major phospholipids, phosphatidylcholine, phosphatidylethanolamine, and phosphatidylserine. Much is known about the enzymes involved in the synthesis of these phospholipids, and recent advances in genetic engineering, single-cell RNA-Seq analyses, and drug screening have provided new perspectives on the importance of some of these enzymes in parasite development and sexual differentiation and have identified targets for the development of new antimalarial drugs. This Minireview focuses on two phospholipid biosynthesis enzymes of P. falciparum that catalyze phosphoethanolamine transmethylation (PfPMT) and phosphatidylserine decarboxylation (PfPSD) during the blood stages of the parasite. We also discuss our current understanding of the biochemical, structural, and biological functions of these enzymes and highlight efforts to use them as antimalarial drug targets.




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Plaintiff in Chief: President Trump and the American Legal System

Members Event

30 October 2019 - 1:00pm to 2:00pm

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

Event participants

James D Zirin, Host, Conversations with Jim Zirin; Author, Plaintiff in Chief: A Portrait of Donald Trump in 3500 Lawsuits

Chair: Chanu Peiris, Programme Manager, International Law Programme, Chatham House

Since assuming office, President Donald Trump’s many encounters with litigation have exposed significant irregularities of the American legal system as it applies to the president.

These encounters – including but not limited to accusations of defamation, obstruction, perjury and non-disclosure agreements – have shown President Trump to hold a particular interpretation of how the rule of law should apply to someone holding the highest elected office in the United States of America.

However, an analysis of Trump’s legal history prior to his assumption of office reveals a tried and tested method of using litigation – or the threat of it – to quieten criticism and opponents. As Trump faces possible impeachment in the House of Representatives, what – if any – influence might his combative approach towards legal battles have on the political proceedings?

Drawing on New York attorney James Zirin’s new book, Plaintiff in Chief, this event examines the relationship between President Trump’s litigation history and his approach to the presidency.

How has the American legal system facilitated Trump’s attitude towards litigation? How can his litigation toolkit be countered?

And what impact has the president’s approach to litigation had on the domestic and global reputation of the American legal system and the office of the president as accountable and credible institutions?

 

Members Events Team




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Crimea’s Occupation Exemplifies the Threat of Attacks on Cultural Heritage

4 February 2020

Kateryna Busol

Robert Bosch Stiftung Academy Fellow, Russia and Eurasia Programme
Societies, courts and policymakers should have a clearer awareness that assaults against cultural heritage constitute a creeping encroachment on a people’s identity, endangering its very survival.

2020-02-04-Bakhchysarai.jpg

'The destructive reconstruction of the 16th-century Bakhchysarai Palace is being conducted by a team with no experience of cultural sites, in a manner that erodes its authenticity and historical value.' Photo: Getty Images.

Violations against cultural property – such as archaeological treasures, artworks, museums or historical sites – can be no less detrimental to the survival of a nation than the physical persecution of its people. These assaults on heritage ensure the hegemony of some nations and distort the imprint of other nations in world history, sometimes to the point of eradication.

As contemporary armed conflicts in Syria, Ukraine and Yemen demonstrate, cultural property violations are not only a matter of the colonial past; they continue to be perpetrated, often in new, intricate ways.

Understandably, from a moral perspective, it is more often the suffering of persons, rather than any kind of ‘cultural’ destruction, that receives the most attention from humanitarian aid providers, the media or the courts. Indeed, the extent of the damage caused by an assault on cultural property is not always immediately evident, but the result can be a threat to the survival of a people. This is strikingly exemplified by what is currently happening in Crimea.

Ukraine’s Crimean peninsula has been occupied by Russia since February 2014, meaning that, under international law, the two states have been involved in an international armed conflict for the last six years.

While much attention has been paid to the alleged war crimes perpetrated by the occupying power, reports by international organizations and the International Criminal Court (ICC) have been less vocal on the issue of cultural property in Crimea. Where they do raise it, they tend to confine their findings to the issue of misappropriation.

However, as part of its larger policy of the annexation and Russification of the peninsula and its history, Russia has gone far beyond misappropriation.

Crimean artefacts have been transferred to Russia – without security justification or Ukrainian authorization as required by the international law of occupation – to be showcased at exhibitions celebrating Russia’s own cultural heritage. In 2016, the Tretyakov Gallery in Moscow staged its record-breaking Aivazovsky exhibition, which included 38 artworks from the Aivazovsky Museum in the Crimean town of Feodosia.

Other ‘cultural’ violations in the region include numerous unsanctioned archaeological excavations, whose findings are often unlawfully exported to Russia or end up on the black market.

There is also the example of Russia’s plan to establish a museum of Christianity in Ukraine’s UNESCO World Heritage site, the Ancient City of Tauric Chersonese. This is an indication of Russia’s policy of asserting itself as a bastion of Orthodox Christianity and culture in the Slavic world, with Crimea as one of the centres.

The harmful effects of Russia’s destructive cultural property policy can be seen in the situation of the Crimean Tatars, Ukraine’s indigenous Muslim people. Already depleted by a Stalin-ordered deportation in 1944 and previously repressed by the Russian Empire, the Crimean Tatars are now facing the destruction of much of the remainder of their heritage.

For example, Muslim burial grounds have been demolished to build the Tavrida Highway, which leads to the newly built Kerch Bridge connecting the peninsula to Russia.

The destructive reconstruction of the 16th-century Bakhchysarai Palace – the only remaining complete architectural ensemble of the indigenous people, included in the UNESCO World Heritage Tentative List – is another example of how the very identity of the Crimean Tatars is being threatened. This reconstruction is being conducted by a team with no experience of cultural sites, in a manner that erodes its authenticity and historical value – which is precisely as Russia intends.

There is a solid body of international and domestic law covering Russia’s treatment of Crimea’s cultural property.

Under the 1954 Hague Convention for the Protection of Cultural Property in the Event of Armed Conflict – ratified by both Ukraine and Russia – the occupying power must facilitate the safeguarding efforts of the national authorities in occupied territories. States parties must prevent any vandalism or misappropriation of cultural property, and, according to the first protocol of the convention, the occupying power is required to prevent any export of artefacts from the occupied territory.

The 1907 Hague Regulations and the 1949 Fourth Geneva Convention confirm that the authentic domestic legislation continues to apply in occupied territories. This leaves Russia with no excuse for non-compliance with Ukraine’s cultural property laws and imposing its own rules unless absolutely necessary.

Besides, both Ukrainian and Russian criminal codes penalise pillage in occupied territory, as well as unsanctioned archaeological excavations. As an occupying power, Russia must not just abstain from such wrongdoings in Crimea, but also duly investigate and prosecute the alleged misconduct.

The clarity of the international legal situation demonstrates that no exhibitions in continental Russia and no archaeological excavations which are not sanctioned by Ukraine can be justified. Likewise, any renovation or use of cultural sites, especially those on permanent or tentative UNESCO lists, must only be conducted pursuant to consultancy with and approval of the Ukrainian authorities.

But the resonance of the Crimean case goes beyond law and touches on issues of the very survival of a people. The Soviet deportation of the Crimean Tatars in 1944 did not only result in the deaths of individuals. Their footprints in Crimea have been gradually erased by baseless treason charges, the long exile of the indigenous community from their native lands and ongoing persecution.

First the Soviet Union and now Russia have targeted the Crimean Tatars’ cultural heritage to undermine their significance in the general historical narrative, making attempts to preserve or celebrate this culture seem futile. Russia is thus imposing its own historical and political hegemony at the expense of the Crimean Tatar and Ukrainian layers of Crimean history.

As exemplified by occupied Crimea, the manipulation and exploitation of cultural heritage can serve an occupying power’s wider policies of appropriating history and asserting its own dominance. Domestic cultural property proceedings are challenging due to the lack of access to the occupied territory, but they should still be pursued.

More effort is needed in the following areas: case prioritization; informing the documenters of alleged violations about the spectrum of cultural property crimes; developing domestic investigative and prosecutorial capacity, including by involving foreign expert consultancy; more proactively seeking bilateral and multilateral cooperation in art crime cases; liaising with auction houses (to track down objects originating from war-affected areas) and museums (to prevent the exhibition of the artefacts from occupied territories).

When possible, cultural property crimes should also be reported to the ICC.

Additionally, more international – public, policy, media and jurisprudential – attention to such violations is needed. Societies, courts and policymakers should have a clearer awareness that assaults against cultural heritage constitute a creeping encroachment on a people’s identity, endangering its very survival.




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Latin America’s COVID-19 Moment: Differences and Solidarity

30 April 2020

Dr Christopher Sabatini

Senior Research Fellow for Latin America, US and the Americas Programme
There has been no better example of the political diversity in Latin America than the varying responses of governments to the coronavirus crisis.

2020-04-30-Chile-Covid.jpg

A municipal cleaning worker disinfects the central market in Santiago, Chile on 7 April 2020 amid the coronavirus pandemic. Photo: Getty Images.

Differing approaches across the hemisphere have had different impacts on presidential popularity and, at least in one case, on democratic institutions and human rights. Yet, even within that diversity, South America’s Southern Cone countries (Argentina, Chile, Paraguay and Uruguay) have shown a sign of solidarity: protecting and facilitating trade flows, sponsoring cross-border research and ensuring citizens’ return to their home countries.    

The response from populist leaders

On the extreme have been the responses of presidents of Brazil, Nicaragua and Mexico, all of whom have ignored the science of the virus and of experts and refused to implement isolation policies.  President Jair Bolsonaro of Brazil fired his health minister, Luis Henrique Mandetta on 16 April for contradicting him and earlier had claimed that the pandemic was a hoax or little more than a ‘measly cold.' 

Meanwhile, Nicaraguan president Daniel Ortega has resisted closing businesses and schools.  After a mysterious 34-day absence, Ortega appeared on television on 15 April reinforcing his refusal to close businesses saying that Nicaraguans must work or they will die and claiming that the virus was ‘imported.’ 

Mexico’s Andres Manuel Lopez Obrador (AMLO) has also resisted the call for strict stay-at-home policies, though with his Deputy Health Minister, Hugo López-Gatell, has closed schools – recently extending the closure to the 1st of June and urging non-essential businesses to close – but focusing primarily on social distancing. 

In contrast to his deputy health minister and Foreign Minister Marcelo Ebrard – who had declared the situation a health emergency on 30th March, later than many neighbouring countries – AMLO has largely attempted to avoid discussion of the pandemic, claiming that in his case he has lucky charms that prevent him from contracting the virus. 

And both Bolsonaro and AMLO have participated in large public rallies, doing all the things that politicians love, shaking hands and hugging babies, and in the case of the former even wiping his nose before embracing an elderly woman.

The Nicaraguan, Brazilian and Mexican presidents make an odd grouping since one (Bosonaro) is considered of the extreme populist right and the others (Ortega and AMLO) of the populist left. What unites them is good old-fashioned populism, a belief in a leader who represents the amorphous popular will and should be unfettered by checks and balances on his power, including something like… science.  

An eclectic group

At the other extreme have been the quick responses by governments in Peru, Argentina, Chile, El Salvador and Colombia which put quarantine measures in place in mid-March. In these cases, governments have even banned outdoor activities and in the case of Peru and Colombia (in the large cities) have imposed alternating days for when women and men can leave the house so as to better control outside movement.  

This too, though, is an eclectic group. It includes a Peronist president Alberto Fernández in Argentina, conservative presidents Sebastian Piñera in Chile and Ivan Duque in Colombia, interim president and relative political neophyte Martin Vizcarra in Peru and outsider president Nayib Bukele in El Salvador. 

El Salvador’s strict quarantine measures have led to rising concerns that Bukele is using the crisis to consolidate personal power, using the national police and the armed forces to enforce the quarantine and ignoring three rulings by the Supreme Court urging the president to end the abuses. In Argentina, Peronist Fernández has shown a surprising commitment to containment even as it hurts his party’s working-class base, not something typically expected of the populist Peronist Party.   

In all of these cases, the quick, strong responses by the presidents shored up their popularity. Peru’s Vizcarra saw his popularity shoot up 35 points in a week to 82 per cent according to surveys taken in March. In late March 2020, Fernández in Argentina saw his approval ratings swell to 79.2 per cent with 94.7 percent of citizens approving of the government’s strict shelter-at-home policies.   Even presidents Piñera and Duque who had struggled with low approval ratings throughout 2019 and saw those numbers sink even lower after the social protests that ended the year have seen their numbers rise.  

According to an 20th April poll, Piñera’s popular approval rating swelled from 13 percent in March 18th at the start of the crisis to 25 per cent by 20th April; while hardly a sweeping popular mandate, even that level was unthinkable only a few months ago when administration was battered by social protests. 

In Colombia, after a series of political missteps and the popular protests, Duque’s popular approval rating had slumped to 26 per cent; by April 2nd, 62 percent of Colombians supported the once-beleaguered president.   (No recent surveys were available for Bukele in El Salvador.)

In contrast, Bolsonaro’s in Brazil has only nudged up.  Before the crisis hit, the president’s popularity had been in steady decline from a high of 49 per cent in January 2019 to 30 per cent by early December 2019. But by the first week in April, in the midst of a crisis in which other presidents saw their approval ratings increase by double digits, after his public disagreements with the health minister, Bolsonaro’s had sunk to 33 per cent while the soon-to-be-fired Mandetta’s stood at 76 per cent.  

AMLO in Mexico has fared no better. The populist leftist scored a high 86 per cent approval rating in February 1, 2019. By March 28, 2020 with concerns over his weak and flippant COVID-19 response and a severe contraction in economic growth, AMLO’s approval rating had sunk 26 points to 60 per cent and his disapproval stood at 37 per cent.    

In the midst of disharmony, coordination

Despite these differences, many countries in the region have shown the solidarity they often speak of but rarely follow in policy or practice. Peru, Chile and other countries have collaborated in repatriating citizens back to their home countries in the midst of the crisis.  

Even the countries of the Southern Cone common market, MERCOSUR, have pulled together on a number of fronts.  The trade bloc had effectively been ruled a dead-man-walking after its failed efforts to integrate Venezuela into the bloc, lowering its standards to let in the petroleum dependent semi-authoritarian government of then President Hugo Chávez. 

Even on the basics of internal cooperation, the block was struggling, unable to coordinate monetary policies and non-tariff trade barriers between the original founding member states, Argentina, Brazil, Paraguay and Uruguay.

The 35-year-old customs union seemed to get a breath a new life with the announcement that it had concluded 20-year-long negotiations with the EU for a free trade deal. Ratification of that deal, however, ran aground on the political differences between the recently elected governments of Bolsonaro in Brazil and the Peronist Fernández in Argentina. 

Bolsonaro refused to attend the Fernández December 2019 inauguration, in protest of the newly elected president’s leftist leanings.  And this was well before their sharply divergent reactions to the COVID-19 virus. 

How surprising then that Mercosur has served as an effective coordination mechanism for these different and once opposed governments. The trade body is collaborating among member states to ensure the repatriation of citizens and has agreed to coordinate to ensure that trade flows, especially of medical supplies, are not interrupted by shutdown measures

Mercosur has even gone one step further than several other bodies have failed to take.  In early April the bloc’s governing body, based in Montevideo, Uruguay created a $16 million (12 million pound) fund to augment country research and assist in the purchase of supplies needed to combat the virus.  

Now if Brazil, Argentina and the others could only coordinate their domestic coronavirus responses and economic policy. In late March Fernández announced he was pulling Argentina out of a possible Mercosur-EU trade deal.




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