Actin and myosin dynamics during epithelial remodeling in avian gastrulation

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AI-generated summary by claude@2026-07, 2026-07-16

This study investigated actin and myosin dynamics in gastrulating quail embryos, finding that epithelial remodeling is associated with junctional myosin contraction, which recruits myosin to junctions and drives cell rearrangements.

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This study investigated how actomyosin contractility drives epithelial remodeling during avian gastrulation, using transgenic quail embryos expressing reporters for actin and myosin to track their dynamics. The authors report that epithelial remodeling events correlate with contraction of junctional myosin, and that medio-apical contractile flows are observed but mainly appear to promote junctional myosin recruitment to drive junction contraction. The paper further characterizes live and apoptotic cell extrusions alongside actomyosin behavior to describe cellular processes underlying primitive streak formation and germ layer emergence. The main limitation stated is that how actomyosin dynamics drives remodeling in amniotes has been poorly understood previously, and the work is focused on this specific gastrulation context. The paper does not explicitly discuss endometriosis or adenomyosis; it was included in the corpus via a keyword match in the upstream search index.

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Abstract

Epithelial remodeling is powered by contractile forces exerted by the actomyosin cytoskeleton. In invertebrates, pulsatile contractile flows of the medio-apical actomyosin cortex have been shown to be critical in promoting junction contraction that ultimately drive cell rearrangements, apical constriction, and cell extrusion. However, how actomyosin dynamics drives epithelial remodeling in amniotes remains poorly understood. In this study, we generated transgenic quail lines reporting actin and myosin and investigate their dynamics in gastrulating embryos. We show that during this process, epithelial remodeling events are closely associated with the contraction of junctional myosin. Although we observe medio-apical contractile flows, those appear to contribute to junction contraction by promoting junctional myosin recruitment. Notably, by characterizing live and apoptotic cell extrusions and their associated actomyosin dynamics, we provide new insights into the cellular processes underlying primitive streak formation and the emergence of germ layers.
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Abstract Epithelial remodeling is powered by contractile forces exerted by the actomyosin cytoskeleton. In invertebrates, pulsatile contractile flows of the medio-apical actomyosin cortex have been shown to be critical in promoting junction contraction that ultimately drive cell rearrangements, apical constriction, and cell extrusion. However, how actomyosin dynamics drives epithelial remodeling in amniotes remains poorly understood. In this study, we generated transgenic quail lines reporting actin and myosin and investigate their dynamics in gastrulating embryos. We show that during this process, epithelial remodeling events are closely associated with the contraction of junctional myosin. Although we observe medio-apical contractile flows, those appear to contribute to junction contraction by promoting junctional myosin recruitment. Notably, by characterizing live and apoptotic cell extrusions and their associated actomyosin dynamics, we provide new insights into the cellular processes underlying primitive streak formation and the emergence of germ layers. Competing Interest Statement The authors have declared no competing interest.

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europepmc
last seen: 2026-05-20T01:45:00.602351+00:00
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last seen: 2026-05-26T02:00:01.498150+00:00
License: CC-BY-4.0