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Community scrambles after top insurance company refuses to pay out homeowners following destructive hurricane: 'Denied or closed with no payment'




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Warren: Trump transition ‘already breaking the law’




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Man heard using racial slur resigns from a Penn State commonwealth campus’ board




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North Ridgeville schools employee arrested, on leave




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Toyota, A Company With Almost No EVs, Says California's EV Mandates Are 'Impossible' To Meet




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King tides, 28-foot waves to swamp the Oregon Coast this week




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‘DOG-EAT-DOG’ TIME IN D’CUP - A15 /// MANNING CUP CHAMPIONS READY TO SHIFT GEAR - A18

PROMOTED RACING, CHAPELTON MAROONS RENEW RIVALRY IN JPL - A16 FUNCAANDUN SET FOR FIFTH STRAIGHT WIN - A21




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‘My Ting Different’ - Tosh Alexander blends R&B and dancehall on new single

Dynamic singer Tosh Alexander has been lighting up the music scene with her latest track, ' My Ting Different', a thrilling collaboration with American rapper and songwriter Lady London. The song fuses R...




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Policeman's murder won't deter fight against crime says Superintendent Nicholson

A police sergeant who was shot and injured at his home in Portmore, St Catherine, on Thursday night succumbed to his injuries on Monday morning.




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Haiti's main airport and capital frozen after a day of violence

PORT-AU-PRINCE, Haiti (AP) — Haiti's main airport remained closed on Tuesday, a day after violence erupted as the country swore in its new prime minister in a politically tumultuous transition.




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Father imprisoned for sexually molesting daughter

A father who pleaded guilty to sexually molesting his 13-year-old daughter was sentenced to several years of imprisonment in the St Catherine Circuit Court on Tuesday.




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SAS Notes for SAS®9 - 66492: FILENAME FTP(FTP/TLS) fails with "ERROR: The connection was reset by a peer" due to using implicit FTP/TLS

If you connect to a FTP/TLS server that is configured to use implicit FTP/TLS, FILENAME FTP/TLS might fail with the following error:


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Mouse Ifit1b is a cap1-RNA-binding protein that inhibits mouse coronavirus translation and is regulated by complexing with Ifit1c [RNA]

Knockout mouse models have been extensively used to study the antiviral activity of IFIT (interferon-induced protein with tetratricopeptide repeats). Human IFIT1 binds to cap0 (m7GpppN) RNA, which lacks methylation on the first and second cap-proximal nucleotides (cap1, m7GpppNm, and cap2, m7GpppNmNm, respectively). These modifications are signatures of “self” in higher eukaryotes, whereas unmodified cap0-RNA is recognized as foreign and, therefore, potentially harmful to the host cell. IFIT1 inhibits translation at the initiation stage by competing with the cap-binding initiation factor complex, eIF4F, restricting infection by certain viruses that possess “nonself” cap0-mRNAs. However, in mice and other rodents, the IFIT1 orthologue has been lost, and the closely related Ifit1b has been duplicated twice, yielding three paralogues: Ifit1, Ifit1b, and Ifit1c. Although murine Ifit1 is similar to human IFIT1 in its cap0-RNA–binding selectivity, the roles of Ifit1b and Ifit1c are unknown. Here, we found that Ifit1b preferentially binds to cap1-RNA, whereas binding is much weaker to cap0- and cap2-RNA. In murine cells, we show that Ifit1b can modulate host translation and restrict WT mouse coronavirus infection. We found that Ifit1c acts as a stimulatory cofactor for both Ifit1 and Ifit1b, promoting their translation inhibition. In this way, Ifit1c acts in an analogous fashion to human IFIT3, which is a cofactor to human IFIT1. This work clarifies similarities and differences between the human and murine IFIT families to facilitate better design and interpretation of mouse models of human infection and sheds light on the evolutionary plasticity of the IFIT family.




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Carnosine synthase deficiency is compatible with normal skeletal muscle and olfactory function but causes reduced olfactory sensitivity in aging mice [Developmental Biology]

Carnosine (β-alanyl-l-histidine) and anserine (β-alanyl-3-methyl-l-histidine) are abundant peptides in the nervous system and skeletal muscle of many vertebrates. Many in vitro and in vivo studies demonstrated that exogenously added carnosine can improve muscle contraction, has antioxidant activity, and can quench various reactive aldehydes. Some of these functions likely contribute to the proposed anti-aging activity of carnosine. However, the physiological role of carnosine and related histidine-containing dipeptides (HCDs) is not clear. In this study, we generated a mouse line deficient in carnosine synthase (Carns1). HCDs were undetectable in the primary olfactory system and skeletal muscle of Carns1-deficient mice. Skeletal muscle contraction in these mice, however, was unaltered, and there was no evidence for reduced pH-buffering capacity in the skeletal muscle. Olfactory tests did not reveal any deterioration in 8-month-old mice lacking carnosine. In contrast, aging (18–24-month-old) Carns1-deficient mice exhibited olfactory sensitivity impairments that correlated with an age-dependent reduction in the number of olfactory receptor neurons. Whereas we found no evidence for elevated levels of lipoxidation and glycation end products in the primary olfactory system, protein carbonylation was increased in the olfactory bulb of aged Carns1-deficient mice. Taken together, these results suggest that carnosine in the olfactory system is not essential for information processing in the olfactory signaling pathway but does have a role in the long-term protection of olfactory receptor neurons, possibly through its antioxidant activity.




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Importance of endothelial Hey1 expression for thoracic great vessel development and its distal enhancer for Notch-dependent endothelial transcription [Gene Regulation]

Thoracic great vessels such as the aorta and subclavian arteries are formed through dynamic remodeling of embryonic pharyngeal arch arteries (PAAs). Previous work has shown that loss of a basic helix-loop-helix transcription factor Hey1 in mice causes abnormal fourth PAA development and lethal great vessel anomalies resembling congenital malformations in humans. However, how Hey1 mediates vascular formation remains unclear. In this study, we revealed that Hey1 in vascular endothelial cells, but not in smooth muscle cells, played essential roles for PAA development and great vessel morphogenesis in mouse embryos. Tek-Cre–mediated Hey1 deletion in endothelial cells affected endothelial tube formation and smooth muscle differentiation in embryonic fourth PAAs and resulted in interruption of the aortic arch and other great vessel malformations. Cell specificity and signal responsiveness of Hey1 expression were controlled through multiple cis-regulatory regions. We found two distal genomic regions that had enhancer activity in endothelial cells and in the pharyngeal epithelium and somites, respectively. The novel endothelial enhancer was conserved across species and was specific to large-caliber arteries. Its transcriptional activity was regulated by Notch signaling in vitro and in vivo, but not by ALK1 signaling and other transcription factors implicated in endothelial cell specificity. The distal endothelial enhancer was not essential for basal Hey1 expression in mouse embryos but may likely serve for Notch-dependent transcriptional control in endothelial cells together with the proximal regulatory region. These findings help in understanding the significance and regulation of endothelial Hey1 as a mediator of multiple signaling pathways in embryonic vascular formation.




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Peptidoglycan analysis reveals that synergistic deacetylase activity in vegetative Clostridium difficile impacts the host response [Glycobiology and Extracellular Matrices]

Clostridium difficile is an anaerobic and spore-forming bacterium responsible for 15–25% of postantibiotic diarrhea and 95% of pseudomembranous colitis. Peptidoglycan is a crucial element of the bacterial cell wall that is exposed to the host, making it an important target for the innate immune system. The C. difficile peptidoglycan is largely N-deacetylated on its glucosamine (93% of muropeptides) through the activity of enzymes known as N-deacetylases, and this N-deacetylation modulates host–pathogen interactions, such as resistance to the bacteriolytic activity of lysozyme, virulence, and host innate immune responses. C. difficile genome analysis showed that 12 genes potentially encode N-deacetylases; however, which of these N-deacetylases are involved in peptidoglycan N-deacetylation remains unknown. Here, we report the enzymes responsible for peptidoglycan N-deacetylation and their respective regulation. Through peptidoglycan analysis of several mutants, we found that the N-deacetylases PdaV and PgdA act in synergy. Together they are responsible for the high level of peptidoglycan N-deacetylation in C. difficile and the consequent resistance to lysozyme. We also characterized a third enzyme, PgdB, as a glucosamine N-deacetylase. However, its impact on N-deacetylation and lysozyme resistance is limited, and its physiological role remains to be dissected. Finally, given the influence of peptidoglycan N-deacetylation on host defense against pathogens, we investigated the virulence and colonization ability of the mutants. Unlike what has been shown in other pathogenic bacteria, a lack of N-deacetylation in C. difficile is not linked to a decrease in virulence.




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Slices template

Slices template

Lorem ipsum dolor sit amet, consectetur adipiscing elit, sed do eiusmod tempor incididunt ut labore et dolore magna aliqua.

nfaulds-adams… 11 September 2020

Lorem ipsum dolor sit amet, consectetur adipiscing elit, sed do eiusmod tempor incididunt ut labore et dolore magna aliqua. Ut enim ad minim veniam, quis nostrud exercitation ullamco laboris nisi ut aliquip ex ea commodo consequat. Duis aute irure dolor in reprehenderit in voluptate velit esse cillum dolore eu fugiat nulla pariatur. Excepteur sint occaecat cupidatat non proident, sunt in culpa qui officia deserunt mollit anim id est laborum.




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

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




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The heptameric structure of the flagellar regulatory protein FlrC is indispensable for ATPase activity and disassembled by cyclic-di-GMP [Protein Structure and Folding]

The bacterial enhancer-binding protein (bEBP) FlrC, controls motility and colonization of Vibrio cholerae by regulating the transcription of class-III flagellar genes in σ54-dependent manner. However, the mechanism by which FlrC regulates transcription is not fully elucidated. Although, most bEBPs require nucleotides to stimulate the oligomerization necessary for function, our previous study showed that the central domain of FlrC (FlrCC) forms heptamer in a nucleotide-independent manner. Furthermore, heptameric FlrCC binds ATP in “cis-mediated” style without any contribution from sensor I motif 285REDXXYR291 of the trans protomer. This atypical ATP binding raises the question of whether heptamerization of FlrC is solely required for transcription regulation, or if it is also critical for ATPase activity. ATPase assays and size exclusion chromatography of the trans-variants FlrCC-Y290A and FlrCC-R291A showed destabilization of heptameric assembly with concomitant abrogation of ATPase activity. Crystal structures showed that in the cis-variant FlrCC-R349A drastic shift of Walker A encroached ATP-binding site, whereas the site remained occupied by ADP in FlrCC-Y290A. We postulated that FlrCC heptamerizes through concentration-dependent cooperativity for maximal ATPase activity and upon heptamerization, packing of trans-acting Tyr290 against cis-acting Arg349 compels Arg349 to maintain proper conformation of Walker A. Finally, a Trp quenching study revealed binding of cyclic-di-GMP with FlrCC. Excess cyclic-di-GMP repressed ATPase activity of FlrCC through destabilization of heptameric assembly, especially at low concentration of protein. Systematic phylogenetic analysis allowed us to propose similar regulatory mechanisms for FlrCs of several Vibrio species and a set of monotrichous Gram-negative bacteria.




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Cholesterol sensing by CD81 is important for hepatitis C virus entry [Protein Structure and Folding]

CD81 plays a central role in a variety of physiological and pathological processes. Recent structural analysis of CD81 indicates that it contains an intramembrane cholesterol-binding pocket and that interaction with cholesterol may regulate a conformational switch in the large extracellular domain of CD81. Therefore, CD81 possesses a potential cholesterol-sensing mechanism; however, its relevance for protein function is thus far unknown. In this study we investigate CD81 cholesterol sensing in the context of its activity as a receptor for hepatitis C virus (HCV). Structure-led mutagenesis of the cholesterol-binding pocket reduced CD81–cholesterol association but had disparate effects on HCV entry, both reducing and enhancing CD81 receptor activity. We reasoned that this could be explained by alterations in the consequences of cholesterol binding. To investigate this further we performed molecular dynamic simulations of CD81 with and without cholesterol; this identified a potential allosteric mechanism by which cholesterol binding regulates the conformation of CD81. To test this, we designed further mutations to force CD81 into either the open (cholesterol-unbound) or closed (cholesterol-bound) conformation. The open mutant of CD81 exhibited reduced HCV receptor activity, whereas the closed mutant enhanced activity. These data are consistent with cholesterol sensing switching CD81 between a receptor active and inactive state. CD81 interactome analysis also suggests that conformational switching may modulate the assembly of CD81–partner protein networks. This work furthers our understanding of the molecular mechanism of CD81 cholesterol sensing, how this relates to HCV entry, and CD81's function as a molecular scaffold; these insights are relevant to CD81's varied roles in both health and disease.




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Evolving the naturally compromised chorismate mutase from Mycobacterium tuberculosis to top performance [Protein Structure and Folding]

Chorismate mutase (CM), an essential enzyme at the branch-point of the shikimate pathway, is required for the biosynthesis of phenylalanine and tyrosine in bacteria, archaea, plants, and fungi. MtCM, the CM from Mycobacterium tuberculosis, has less than 1% of the catalytic efficiency of a typical natural CM and requires complex formation with 3-deoxy-d-arabino-heptulosonate 7-phosphate synthase for high activity. To explore the full potential of MtCM for catalyzing its native reaction, we applied diverse iterative cycles of mutagenesis and selection, thereby raising kcat/Km 270-fold to 5 × 105 m−1s−1, which is even higher than for the complex. Moreover, the evolutionarily optimized autonomous MtCM, which had 11 of its 90 amino acids exchanged, was stabilized compared with its progenitor, as indicated by a 9 °C increase in melting temperature. The 1.5 Å crystal structure of the top-evolved MtCM variant reveals the molecular underpinnings of this activity boost. Some acquired residues (e.g. Pro52 and Asp55) are conserved in naturally efficient CMs, but most of them lie beyond the active site. Our evolutionary trajectories reached a plateau at the level of the best natural enzymes, suggesting that we have exhausted the potential of MtCM. Taken together, these findings show that the scaffold of MtCM, which naturally evolved for mediocrity to enable inter-enzyme allosteric regulation of the shikimate pathway, is inherently capable of high activity.




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MMP activation-associated aminopeptidase N reveals a bivalent 14-3-3 binding motif [Protein Structure and Folding]

Aminopeptidase N (APN, CD13) is a transmembrane ectopeptidase involved in many crucial cellular functions. Besides its role as a peptidase, APN also mediates signal transduction and is involved in the activation of matrix metalloproteinases (MMPs). MMPs function in tissue remodeling within the extracellular space and are therefore involved in many human diseases, such as fibrosis, rheumatoid arthritis, tumor angiogenesis, and metastasis, as well as viral infections. However, the exact mechanism that leads to APN-driven MMP activation is unclear. It was previously shown that extracellular 14-3-3 adapter proteins bind to APN and thereby induce the transcription of MMPs. As a first step, we sought to identify potential 14-3-3–binding sites in the APN sequence. We constructed a set of phosphorylated peptides derived from APN to probe for interactions. We identified and characterized a canonical 14-3-3–binding site (site 1) within the flexible, structurally unresolved N-terminal APN region using direct binding fluorescence polarization assays and thermodynamic analysis. In addition, we identified a secondary, noncanonical binding site (site 2), which enhances the binding affinity in combination with site 1 by many orders of magnitude. Finally, we solved crystal structures of 14-3-3σ bound to mono- and bis-phosphorylated APN-derived peptides, which revealed atomic details of the binding mode of mono- and bivalent 14-3-3 interactions. Therefore, our findings shed some light on the first steps of APN-mediated MMP activation and open the field for further investigation of this important signaling pathway.




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Molecular characterization of the RNA-protein complex directing -2/-1 programmed ribosomal frameshifting during arterivirus replicase expression [Protein Structure and Folding]

Programmed ribosomal frameshifting (PRF) is a mechanism used by arteriviruses like porcine reproductive and respiratory syndrome virus (PRRSV) to generate multiple proteins from overlapping reading frames within its RNA genome. PRRSV employs −1 PRF directed by RNA secondary and tertiary structures within its viral genome (canonical PRF), as well as a noncanonical −1 and −2 PRF that are stimulated by the interactions of PRRSV nonstructural protein 1β (nsp1β) and host protein poly(C)-binding protein (PCBP) 1 or 2 with the viral genome. Together, nsp1β and one of the PCBPs act as transactivators that bind a C-rich motif near the shift site to stimulate −1 and −2 PRF, thereby enabling the ribosome to generate two frameshift products that are implicated in viral immune evasion. How nsp1β and PCBP associate with the viral RNA genome remains unclear. Here, we describe the purification of the nsp1β:PCBP2:viral RNA complex on a scale sufficient for structural analysis using small-angle X-ray scattering and stochiometric analysis by analytical ultracentrifugation. The proteins associate with the RNA C-rich motif as a 1:1:1 complex. The monomeric form of nsp1β within the complex differs from previously reported homodimer identified by X-ray crystallography. Functional analysis of the complex via mutational analysis combined with RNA-binding assays and cell-based frameshifting reporter assays reveal a number of key residues within nsp1β and PCBP2 that are involved in complex formation and function. Our results suggest that nsp1β and PCBP2 both interact directly with viral RNA during formation of the complex to coordinate this unusual PRF mechanism.




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Domestic Violence in Russia: The Impact of the COVID-19 Pandemic

20 July 2020

Ekaterina Aleynikova

Research Assistant, Russia and Eurasia Programme
The COVID-19 pandemic has made Russia’s domestic violence problem more visible, with shifting public opinion potentially incentivizing the government to change its approach, argues Ekaterina Aleynikova.

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Campaigners during a rally held in 2019 in support of a Russian law on domestic violence. Photo: Getty Images

Russia is one of the few countries in the region to have no legal definition of domestic violence and, as a result, there are no protective measures specific to domestic violence such as restraining orders or compulsory anger management training for abusers. In fact, the government has taken steps in recent years to remove any legal distinction between assault happening in one’s home, and elsewhere, with battery among family or household members for first-time offences decriminalized in 2017.

The Russian Ministry of Justice explicitly defended this position in its response to an enquiry into Russian domestic violence cases by the European Court of Human Rights (ECtHR) in November 2019. The ministry claimed existing legislation adequately protects citizens from domestic violence, ‘even though it has never been considered a separate offence’, reiterating that there is ‘no need’ for adopting specific legislation.

However, the four cases that led to the ECtHR’s enquiry demonstrate that current legislation is not sufficient. The most prominent case is that of Margarita Gracheva whose ex-husband severed her hands in 2017 despite her having made multiple complaints to the police ahead of the act being committed. If Russian legislation had mechanisms in place to isolate victims from their abusers, then Gracheva could have been protected by the law.

Instead, systemic impunity for abusers is supported by statements from people in power excusing domestic violence. The most recent of such statements came from the head of the Chechen Republic, Ramzan Kadyrov, in June 2020. When meeting with the family of a young woman allegedly murdered by her husband, Chechnya’s leader said, husbands beating their wives ‘happens’ and that the young woman should have tried harder to hold on to her marriage. These statements send clear signals to abusers that their actions are justified, and to the victims, that they won’t be protected if they were to come forward.

Similarly, to other parts of the world, civil society organizations in Russia have reported an increase in the number of cases of domestic violence during the COVID-19 pandemic. On a personal level, the pandemic has often exacerbated many of the factors that can lead to domestic violence such as stress, economic anxiety or social isolation.

On a systemic level, many of the provisions intended to protect victims of violence, which were already ineffective in Russia, have been worsened during the lockdown. Where police may not have rapidly responded to reports of domestic violence previously, under lockdown, they have become focused on  other priorities and, where shelters and support networks for the victims may have been scarce in the past, they have been further constrained.

Unsurprisingly, the strategy of the Russian state so far has been to deny that there is a problem of domestic violence, with the Ministry of Interior reporting that, according to their statistics, the number of domestic violence cases have gone down during the lockdown. Indeed, Chairwoman of the Federation Council, Valentina Matvienko, has said she does not believe lockdown has increased domestic violence because, on the contrary, families have been  ‘brought together’, reflecting wishful thinking at best and negligence at worst.

The pandemic has also been used as an excuse to postpone discussion of a federal law on domestic violence, drafted by civil society, that was submitted for review by the Duma last year. This bill would have introduced different types of domestic violence such as psychological and economic violence and transferred domestic violence offences from private to public prosecutions to make it easier for victims to seek justice.

The government’s disregard for domestic violence reflects, in part, the patriarchal mindsets of those in power but perhaps, more significantly, the Kremlin’s belief that conservative social groups constitute its main support base. This has been made evident by the politicization of Russia’s ‘traditional’ values in recent years which was vigorously deployed throughout the constitutional amendments campaign. While it is clear that the true purpose of amending the constitution has always been to allow Vladimir Putin to stay in power beyond 2024, amendments relating to this were absent from the government’s campaign. Instead, Russians were encouraged to vote by populist socially-conservative messages, hence why respect for traditional values has been added to the constitution.

Despite this, attitudes in Russian society are changing. A February 2020 survey by the Levada Centre showed that 61 per cent of Russians – and 74 per cent of Russian women – think domestic violence is a serious problem.

Moreover, the survey shows that women are much more aware of domestic violence than men – with every third woman in Russia admits being aware of domestic violence in their social circles while only every fifth man admits the same. This could be a sign that Russian men and women, on average, have a different understanding of what constitutes domestic violence. If so, adopting a law that defines domestic violence and holding a public awareness campaign is of paramount importance to eliminate any misunderstanding.

The difference could also be a sign that victims of domestic violence are more likely to confide in women hence making domestic violence less visible to men. This awareness gap perhaps explains the difference between men’s and women’s assessments of how serious the issue in Russia is.

The pandemic has provoked a new wave of discussions of domestic violence among Russia’s population with stories and statistics widely shared in the media and on the internet. As domestic violence becomes more visible, public perceptions are likely to shift further towards recognizing, and hopefully condemning, it. But, while legislation is crucial, the experience of other countries in the region, such as Armenia or Kazakhstan, shows that adopting laws on domestic violence is not enough. Measures are needed to ensure implementation of the law including training police officers and state officials and instituting disciplinary action for negligence of victims’ complaints.

Nevertheless, admitting there is a problem with domestic violence in Russia, and introducing laws, are an essential first step. The Russian government seems to have placed its bet on the support of conservative social groups but changing public opinion may prove this strategy unsustainable.




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Lessons from COVID-19: A Catalyst for Improving Sanctions?

26 August 2020

Emanuela-Chiara Gillard

Associate Fellow, International Law Programme
As the COVID-19 pandemic continues, efforts by states and humanitarian actors to stop its spread and to treat the sick are being hindered by existing sanctions and counterterrorism measures.

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Syrians walk past a mural painted as part of an awareness campaign by UNICEF and WHO, bearing instructions on protection from COVID-19, in the Kurdish-majority city of Qamishli, Syria, on 16 August 2020. Photo by Delil Souleiman/AFP via Getty Images.

If sanctions imposed by the UN Security Council, the EU, or states unilaterally, are not sufficiently targeted, and do not include adequate safeguards for humanitarian action, they can adversely affect the very populations for whose well-being they were imposed in the first place.  This is not a new concern, but one brought starkly to the fore by their impact on responses to COVID-19.

The detrimental impact of sanctions, which can prevent the supply of medical or personal protective equipment (PPE), or the provision of technical support or training to local health authorities is evident. Sanctions can also affect remote learning if support cannot be provided to local education authorities, export licences cannot be obtained for the necessary equipment and software, or if the companies providing reliable internet coverage are designated under the sanctions.

A comparison of US and EU sanctions on Syria reveals key challenges, but also opportunities for improving current arrangements for the imposition and implementation of sanctions so as to minimize adverse consequences in Syria and more generally.

The US has imposed broad sanctions, such as restrictions on the provision of funds, goods or services – even charitable contributions – to the Syrian government, including the health and education ministries, now playing a central role in the COVID-19 response.

UN agencies are exempted from these restrictions. A general license authorizes NGOs to conduct activities to meet basic needs, but it excludes those involving the government. So NGOs wishing to provide medical devices, PPE, training or other support to ministry of health staff have to apply for a specific licence.

But procedures for applying for licences are complicated, and the approval process notoriously slow.  No accommodation has been made to facilitate the COVID-19 response: no interpretative guidance – that would be valuable for all NGOs – has been issued, and no procedures established for reviewing applications more quickly.  There is no statement of policy indicating the circumstances under which specific licences might be granted.

Transactions with designated entities other than the government, such as internet providers whose services are necessary for remote learning, remain prohibited, and regulations expressly preclude applying for specific licences.

US sanctions frequently have a broad scope, both in direct and indirect application.  NGOs registered in the US, and staff who are US nationals, are directly bound by them, and grant agreements between the US government and non-US NGOs require the latter to comply with US sanctions.

This leaves the non-US NGOs in a Catch-22 situation – as they are not ‘US persons’ they cannot apply for specific licenses, but if they operate without such licences they may be violating grant requirements. This lack of clarity contributes to banks’ unwillingness to provide services, and may lead NGOs to curtail their activities.  This situation is regrettable in Syria, where the US is the first donor to humanitarian action, and also arises in other contexts where the US has imposed similar sanctions.

The EU’s sanctions for Syria are far more targeted. Of relevance to the COVID-19 response, they do not include prohibitions on the provision of support to the government that could impede assistance in the medical field.  There are, however, restrictions on the provision of certain types of PPE or substances used for disinfection, and also on transactions with designated telecommunications providers that affect continuity of education during lockdowns.  Although not prohibited, these activities must be authorized by member states’ competent authorities. Similar concerns arise about the complexity and delays of the processes.

The EU sanctions framework is complex, so the recent European Commission Guidance Note on Syria providing official clarification of how it applies to humanitarian action is welcome.  Although the note only explains the existing rules rather than amending them to facilitate the COVID-19 response, it does include a number of important elements relevant not just to Syria, but to the interplay between sanctions and humanitarian action more broadly.

First, it notes that ‘in accordance with International Humanitarian Law where no other option is available, the provision of humanitarian aid should not be prevented by EU restrictive measures’.  This recognizes that humanitarian assistance takes priority over any inconsistent restrictions in sanctions, and it also applies both to UN sanctions and unilateral measures. It is a starting premise that is frequently overlooked in discussions of whether sanctions should include exceptions for humanitarian action.  Its reaffirmation is timely, and it must guide states in drawing up future sanctions.

Second, the note states that sanctions do not require the screening of final beneficiaries of humanitarian programmes.  This means that once someone has been identified as an individual in need on the basis of humanitarian principles, no further screening is required.  This is extremely important to COVID-19 responses as it reflects a foundational principle of IHL that, to the fullest extent practicable, everyone is entitled to the medical care required by their condition without distinction.

Third, while responsibility for the implementation of sanctions, including the granting of authorizations, lies with member states, the note nudges them to adopt a number of measures to expedite and streamline such processes.  These include the suggestion that states could issue a single authorization for the provision of humanitarian aid in response to the pandemic.

The European Commission is to be commended for this initiative, which should be replicated for other contexts where the COVID-19 response may be undermined by sanctions.  These include Gaza, where it would be important to highlight that the designation of Hamas under EU counterterrorism sanctions must not prevent the provision of assistance to relevant ministries.

Failing to draw a distinction between the designated political party and the structures of civil administration risks turning targeted financial sanctions into measures akin to comprehensive sanctions.

The pandemic should serve as a catalyst for improving the system for the adoption and implementation of sanctions by the UN, the EU and individual states, including the UK as it elaborates its sanctions policy post-Brexit. The principles are clear: without prejudicing the aims for which sanctions have been imposed, humanitarian needs must always be prioritized, and met.




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

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




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The role of uncoupling protein 2 in macrophages and its impact on obesity-induced adipose tissue inflammation and insulin resistance [Immunology]

The development of a chronic, low-grade inflammation originating from adipose tissue in obese subjects is widely recognized to induce insulin resistance, leading to the development of type 2 diabetes. The adipose tissue microenvironment drives specific metabolic reprogramming of adipose tissue macrophages, contributing to the induction of tissue inflammation. Uncoupling protein 2 (UCP2), a mitochondrial anion carrier, is thought to separately modulate inflammatory and metabolic processes in macrophages and is up-regulated in macrophages in the context of obesity and diabetes. Here, we investigate the role of UCP2 in macrophage activation in the context of obesity-induced adipose tissue inflammation and insulin resistance. Using a myeloid-specific knockout of UCP2 (Ucp2ΔLysM), we found that UCP2 deficiency significantly increases glycolysis and oxidative respiration, both unstimulated and after inflammatory conditions. Strikingly, fatty acid loading abolished the metabolic differences between Ucp2ΔLysM macrophages and their floxed controls. Furthermore, Ucp2ΔLysM macrophages show attenuated pro-inflammatory responses toward Toll-like receptor-2 and -4 stimulation. To test the relevance of macrophage-specific Ucp2 deletion in vivo, Ucp2ΔLysM and Ucp2fl/fl mice were rendered obese and insulin resistant through high-fat feeding. Although no differences in adipose tissue inflammation or insulin resistance was found between the two genotypes, adipose tissue macrophages isolated from diet-induced obese Ucp2ΔLysM mice showed decreased TNFα secretion after ex vivo lipopolysaccharide stimulation compared with their Ucp2fl/fl littermates. Together, these results demonstrate that although UCP2 regulates both metabolism and the inflammatory response of macrophages, its activity is not crucial in shaping macrophage activation in the adipose tissue during obesity-induced insulin resistance.




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Coronavirus infection and PARP expression dysregulate the NAD metabolome: An actionable component of innate immunity [Molecular Bases of Disease]

Poly(ADP-ribose) polymerase (PARP) superfamily members covalently link either a single ADP-ribose (ADPR) or a chain of ADPR units to proteins using NAD as the source of ADPR. Although the well-known poly(ADP-ribosylating) (PARylating) PARPs primarily function in the DNA damage response, many noncanonical mono(ADP-ribosylating) (MARylating) PARPs are associated with cellular antiviral responses. We recently demonstrated robust up-regulation of several PARPs following infection with murine hepatitis virus (MHV), a model coronavirus. Here we show that SARS-CoV-2 infection strikingly up-regulates MARylating PARPs and induces the expression of genes encoding enzymes for salvage NAD synthesis from nicotinamide (NAM) and nicotinamide riboside (NR), while down-regulating other NAD biosynthetic pathways. We show that overexpression of PARP10 is sufficient to depress cellular NAD and that the activities of the transcriptionally induced enzymes PARP7, PARP10, PARP12 and PARP14 are limited by cellular NAD and can be enhanced by pharmacological activation of NAD synthesis. We further demonstrate that infection with MHV induces a severe attack on host cell NAD+ and NADP+. Finally, we show that NAMPT activation, NAM, and NR dramatically decrease the replication of an MHV that is sensitive to PARP activity. These data suggest that the antiviral activities of noncanonical PARP isozyme activities are limited by the availability of NAD and that nutritional and pharmacological interventions to enhance NAD levels may boost innate immunity to coronaviruses.




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Priorities for implementing Ethiopia's national dialogue

Priorities for implementing Ethiopia's national dialogue 11 May 2022 — 1:00PM TO 3:00PM Anonymous (not verified) 3 May 2022 Online

Experts discuss challenges and priorities in shaping an inclusive and effective national dialogue in Ethiopia.

Ethiopia is grappling with numerous contentious national issues – not least persistent conflict in several parts of the country – which underscore the need for large-scale dialogue and reconciliation efforts to address the country’s deep-rooted societal and political divisions. Ethiopia’s newly established National Dialogue Commission – whose 11 commissioners were appointed in February 2022 – has begun a four-phased process of preparations for a dialogue, with its initial stage focused on stakeholder engagement and local knowledge mobilization.

There are major challenges, however, in ensuring inclusivity amidst ongoing conflict and questions on how a country-wide process will sit alongside local dialogue initiatives and wider mediation and peacebuilding efforts. Linking the process to constitutional bodies will also be an important priority to ensure dialogue outcomes are effectively implemented.

At this public event, panellists will exchange perspectives on how to shape an effective national dialogue in Ethiopia, including priorities for building a credible National Dialogue Commission and the roles and responsibilities of other national, regional and local-level actors. They will also discuss key implementation mechanisms and long-term priorities for trust-building and cultivating a conducive environment for inclusive dialogue.

This webinar is part of a series of events and outputs on Ethiopia’s political transition.

This event will also be broadcast live on the Chatham House Africa Programme’s Facebook page.




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Reflections at 100: Empire and decolonization

Reflections at 100: Empire and decolonization Audio MVieira 1 November 2022

How did leading academics and policymakers think about and impact imperialism and decolonization from the 1920s to 1970s?

This episode of Reflections at 100, marking the centenary of International Affairs, looks at how empire and decolonization have been discussed in the journal.

Isabel and Krisztina speak to Meera Sabaratnam about how thinkers and policymakers from the 1920s to 1970s understood both empire and then decolonization. Meera highlights four tensions present within the discussions, and how these may impact the international order today.

Inderjeet Parmar delves deeper into the influence of Chatham House at the time and situates these discussions in the broader think-tank and global context.

Reflections at 100 is a mini-series accompanying the journal’s centenary Archive Collections. The collections bring together articles from our archive which speak to the past, present, and future of current affairs issues. In each podcast episode we speak to editors and contributors to the collection and explore what the research tells us about policymaking today. 

Explore the Archive Collection, free to access until mid-November 2022, including Meera’s introduction: 100 years of empire and decolonization.

International Affairs was started at Chatham House in 1922 to communicate research to members who could not attend in person. Over the past 100 years it has transformed into a journal that publishes academically rigorous and policy relevant research. It is published for Chatham House by Oxford University Press. Read the latest issue here. 




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Sudan’s gold boom: Connections to conflict and transnational impacts

Sudan’s gold boom: Connections to conflict and transnational impacts 7 December 2022 — 2:00PM TO 3:30PM Anonymous (not verified) 24 November 2022 Online

At this event, experts will discuss Sudan’s gold sector, its connections to conflict, and transnational impacts. 

At this webinar panellists will discuss Sudan’s gold sector, its connections to conflict, and transnational impacts.

Sudan is one of the largest gold producers on the continent, with the industry constituting Sudan’s foremost source of hard currency since the secession of South Sudan in 2011 and resulting loss of oilfields.

The gold rush that has ensued has had important implications for domestic and transnational conflict dynamics. Military actors and armed groups have sought control of gold-producing areas in the peripheries and to capitalize on the flow of labour migrants, against a wider backdrop of conflict partly stemming from contestation for control between central and local actors.

International interests are prominent, including increased Russian involvement in the sector, while gold smuggling has also interlaced with mercenary activity in neighbouring CAR, Chad and Libya.
 
At this event, panellists will discuss Sudan’s gold trade, its connections to conflict, and transnational impacts, including the international politics of Sudan’s gold extraction and role of armed groups. It will also explore the environmental and socio-economic dimensions of gold in Sudan’s border areas. 
 
This roundtable is an output of the Cross-Border Conflict: Evidence, Policy and Trends (XCEPT) research programme, funded by UK Aid from the UK government.
 




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Impact of the ISCHEMIA Trial on Stress Nuclear Myocardial Perfusion Imaging




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The added value of 18F-FDG PET/CT compared to 68Ga-PSMA PET/CT in patients with castration-resistant prostate cancer

Purpose: The 68Ga-PSMA PET/CT is a commonly used imaging modality in prostate cancers. However, few studies have compared the diagnostic efficiency between 68Ga-PSMA and 18F-FDG PET/CT and evaluated whether a heterogeneous metabolic phenotype (especially PSMA-FDG+ lesions) exists in patients with castration-resistant prostate cancer (CRPC). We determined the added value of 18F-FDG PET/CT compared to 68Ga-PSMA PET/CT in CRPC patients and identified CRPC patients who may benefit from additional 18F-FDG PET/CT. Methods: Data of 56 patients with CRPC who underwent both 68Ga-PSMA and 18F-FDG PET/CT from May 2018 to February 2021 were retrospectively analysed. Patients were classified into two groups with or without PSMA-FDG+ lesions. The differences in patient characteristics between the two groups and predictors of patients who having at least one PSMA-FDG+ lesion were analysed. Results: Although both the detection rate (75.0% vs. 51.8%, P = 0.004) and positive lesion number (135 vs. 95) of 68Ga-PSMA PET/CT were higher than 18F-FDG PET/CT, there were still 13/56 (23.2%) patients with at least one PSMA-FDG+ lesion. The prostate-specific antigen (PSA) and Gleason score were both higher in the patients with PSMA-FDG+ lesions than in those without PSMA-FDG+ lesions (P = 0.04 and P<0.001, respectively). Multivariate regression analysis showed that the Gleason score (≥8) and PSA (≥7.9 ng/mL) were associated with the detection rate of patients who had PSMA-FDG+ lesions (P = 0.01 and P = 0.04, respectively). The incidences of having PSMA-FDG+ lesions in low-probability (Gleason score<8 and PSA<7.9 ng/mL), medium-probability (Gleason score≥8 and PSA<7.9 ng/mL or Gleason score<8 and PSA≥7.9 ng/mL), and high-probability (Gleason score≥8 and PSA≥7.9 ng/mL) groups were 0%, 21.7%, and 61.5%, respectively (P<0.001). Conclusion: Gleason score and PSA are significant predictors for PSMA-FDG+ lesions, and CRPC patients with high Gleason score and PSA may benefit from additional 18F-FDG PET/CT.




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The Annual Journal Impact Factor Saga




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Theranostics for Meningioma on the Rise: New EANM/EANO/RANO/SNMMI Guidelines Pave the Way to Improved Patient Outcomes Using Radiolabeled Somatostatin Receptor Ligands




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Impact of 18F-FDG PET/MRI on Therapeutic Management of Women with Newly Diagnosed Breast Cancer: Results from a Prospective Double-Center Trial

Visual Abstract




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Diagnostic Radiopharmaceuticals: A Sustainable Path to the Improvement of Patient Care




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Improved Localization of Insulinomas Using 68Ga-NODAGA-Exendin-4 PET/CT

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MIRD Pamphlet No. 31: MIRDcell V4--Artificial Intelligence Tools to Formulate Optimized Radiopharmaceutical Cocktails for Therapy

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Head-to-Head Comparison of [68Ga]Ga-NOTA-RM26 and [18F]FDG PET/CT in Patients with Gastrointestinal Stromal Tumors: A Prospective Study

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Comparison of Posttherapy 4- and 24-Hour [177Lu]Lu-PSMA SPECT/CT and Pretherapy PSMA PET/CT in Assessment of Disease in Men with Metastatic Castration-Resistant Prostate Cancer

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Comparison Between Brain and Cerebellar Autoradiography Using [18F]Flortaucipir, [18F]MK6240, and [18F]PI2620 in Postmortem Human Brain Tissue

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International Metabolic Prognostic Index Is Superior to Other Metabolic Tumor Volume-Based Prognostication Methods in a Real-Life Cohort of Diffuse Large B-Cell Lymphoma

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Pacific Rim timeline: Information for defenders from a braid of interlocking attack campaigns

Sophos X-Ops unveils five-year investigation tracking China-based groups targeting perimeter devices





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&quot;Questioning the Quantifiable: Are We Measuring What Matters in Heart Failure Care?&quot;




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Re: Decompression alone or with fusion for degenerative lumbar spondylolisthesis (Nordsten-DS): five year follow-up of a randomised, multicentre, non-inferiority trial




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A Comprehensive Gender-related Secretome of Plasmodium berghei Sexual Stages

Felicia Grasso
Dec 1, 2020; 19:1986-1996
Research




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

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




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A Novel Mechanism for NF-{kappa}B-activation via I{kappa}B-aggregation: Implications for Hepatic Mallory-Denk-Body Induced Inflammation

Yi Liu
Dec 1, 2020; 19:1968-1985
Research