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Glass, A.

Publications and source records attributed to Glass, A..

3 recordsLinked to original sources

Preliminary report on the molecular epidemiology of mpox, South Africa 2024

Mpox is an emerging viral infection and has since May 2022 been reported in a multi-country outbreak involving predominantly previously non-endemic countries. In addition, the number of cases of mpox is also rising in some endemic countries in Western and Central Africa. The disease is a notifiable medical condition in South Africa, with no cases reported before 2022. However, in 2022, coinciding with the peak of a multi-country mpox outbreak, five mpox cases were diagnosed in the country. Genomic sequencing and analysis revealed the presence of a monkeypox virus variant, which was circulating during the multi-country outbreak, namely Clade IIb sub-lineage B.1.7 (hMPXV). After the fifth case was reported in 2022, there were no cases detected for the following 20 months. In May 2024, mpox cases were again detected in South Africa leading to concerns that the virus may have been silently transmitting in the country since 2022. Genomic sequencing and analysis for 22 mpox cases reported during May to September 2024, were compared with sequences obtained from mpox cases reported in South Africa in 2022, and cases that have been reported globally. It was found that the sequences of the 2024 cases analysed in this study, clustered with Clade IIb hMPXV and sub-lineage B.1.20 and B.1.6 sequences. The results indicate that the detection of mpox cases in South Africa was an extension of the ongoing multi-country outbreak. Detection of different sub-lineages of hMPXV indicates reintroductions of the virus in the country since 2022, with local transmission of Clade IIb B1.20 hMPXV.

microbiology↗

Temperature and depth dependence of the spatial distribution of snow crab

The cascading effects of rapid climate change is a reality with which all biota are challenged. In this context, we examine the spatiotemporal probability of occurrence of snow crab as a means to express viable habitat. This is attempted for three demographic components, morphometrically mature males and females and immature adolescent crab in the Scotian Shelf region of the northwest Atlantic, Canada. We use a robust approach, known as Conditional AutoRegressive models, to define viable habitat. Further, we focus upon viable habitat, conditioned on the marginal influence of temperature and depth as they are known to be important constraints on snow crab. We observe some niche partitioning in terms of depth and temperature. We also note declines in viable habitat marginal to depth and temperature since 2010 for all demographic groups. This population representing the southern-most distribution of snow crab in the northwest Atlantic are vulnerable to degradation of viable habitat attributable to rapid climate change. One-Sentence SummaryRapid climate change and a decadal scale change in the viable habitat of snow crab of the Scotian Shelf ecosystem.

ecology↗

Targeting acetyl-CoA metabolism attenuates the formation of fear memories through reduced activity-dependent histone acetylation

Histone acetylation is a key component in the consolidation of long-term fear memories. Epigenetic enzymes involved in histone acetylation, including histone acetyltransferases and deacetylases, have been put forward as potential pharmacological targets in the treatment of pathological fear memories, such as those that underlie post-traumatic stress disorder (PTSD). However, these enzymes typically play a ubiquitous role in gene regulation, which precludes the clinical use of systemic manipulations. Recently, we have found that a nuclear-localized metabolic enzyme, Acetyl-coA synthetase 2 (Acss2), modulates histone acetylation during learning and memory. Loss of Acss2 is well-tolerated in mice, with no impact on general health or baseline behavior. Here, we show that an Acss2 null mouse model shows reduced acquisition of long-term fear memories in assays of contextual and cued fear conditioning. We find that loss of Acss2 leads to consolidation-specific reductions in both histone acetylation and the expression of critical learning and memory-related genes in the dorsal hippocampus. Further, we show that systemic administration of blood-brain-barrier (BBB)-permeable Acss2 inhibitors during the consolidation window reduces fear memory formation in mice and rats, and also reduces anxiety in a predator-scent-stress (PSS) paradigm. Our findings suggest that Acss2 plays a critical role in the formation of fear memories, and represents a potential pharmacological target in the treatment of PTSD.

neuroscience↗