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A coiled-coil-based transduction mechanism is identified for a serine/threonine phosphatase that controls a bacterial stress response, suggesting that phosphatases are part of a modularly exchangeable ...
CPGs. Their model shows that cell-type-specific connectivity and a dominant inhibitory drive could underlie rhythm generation. Excitatory input could act to enhance the frequency range of these ...
This is a potentially valuable modeling study on sequence generation in the hippocampus in a variety of behavioral contexts. While the scope of the model is ambitious, its presentation is incomplete ...
This study provides useful information on the impact of Lamin A/C knockdown on gene expression using RNA-Seq analysis. In addition, the impact of Lamin A/C knockdown on telomere dynamics is explored ...
The unfolded protein response (UPR) is a crucial signaling network that preserves endoplasmic reticulum (ER) homeostasis, impacting both health and disease. When ER stress occurs, often due to an ...
Department of Pharmacology and Molecular Sciences, Johns Hopkins University, Baltimore, United States ...
This study presents compelling evidence that the denitrosylase SCoR2 regulates cardioprotective metabolic reprogramming in the heart following ischemia/reperfusion injury. The findings are supported ...
Researchers have used high-throughput neutralisation assays to reveal how gaps in individual immunity shape the success of circulating flu strains.
The interferon-induced GTPase GVIN1 prevents bacteria from spreading among cells by coating them and rendering them immobile.
This useful manuscript describes cryo-EM structures of archaeal proteasomes that reveal insights into how occupancy of binding pockets on the 20S protease regulates proteasome gating. The evidence ...
Nervous necrosis virus typically enters host cells via endocytosis, but it can also enter via a process called macropinocytosis.
High-profile news coverage that eLife papers generated in April 2025, including Popular Science, Daily Express and LiveScience.
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