An RNAi based genetic screen and subsequent analyses reveal how dyneins and small GTPases coordinate autophagosome positioning at the ncMTOC in fat cells, advancing understanding of autophagic vesicle ...
A survey of reasoning behaviour in medical large language models uncovers emerging trends, highlights open challenges, and introduces theoretical frameworks that enhance reasoning behaviour ...
A study shows how newly created neurons depend on blood flow to travel to their final location in the adult brain, paving the way for future research on blood flow-dependent cell migration which may ...
Findings present insights on the genetic elements that regulate the development of the face and skull in marsupials, with data providing an “invaluable reference” for future mammalian evolution ...
Novel and published data confirm that cartilaginous fishes (chondrichthyans) from many different clades share interesting skeletal features that are similar to bone, but some 'classic' chondrichthyan ...
Muscle-derived branched-chain amino acids support thermogenesis in brown adipose tissue, thereby helping maintain body temperature during impaired muscle function or physiological stress.
Cells process dynamic signaling inputs to regulate fate decisions during development. While oscillations or waves in key developmental pathways, such as Wnt, have been widely observed, the principles ...
This important work employed a recent, functional muscle network analysis for evaluating rehabilitation outcomes in post-stroke patients. While the research direction is relevant and suggests the need ...
This study presents a fundamental discovery of how cerebellar climbing fibers modulate plastic changes in the somatosensory cortex by identifying both the responsible cortical circuit and the ...
Hematopoietic reprogramming reflects the selective and evolutionarily conserved engagement of transcription factor networks that encode innate immune memory in long-lived stem cells.
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Evolutionary changes in RNA binding and antiviral activity result in diverse IFIT1 functions across mammals, even among closely related species.