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首页> 外文期刊>Nature Communications >Actomyosin meshwork mechanosensing enables tissue shape to orient cell force
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Actomyosin meshwork mechanosensing enables tissue shape to orient cell force

机译:肌动球蛋白网状机械传感使组织形状定向细胞力

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摘要

Sculpting organism shape requires that cells produce forces with proper directionality. Thus, it is critical to understand how cells orient the cytoskeleton to produce forces that deform tissues. During Drosophila gastrulation, actomyosin contraction in ventral cells generates a long, narrow epithelial furrow, termed the ventral furrow, in which actomyosin fibres and tension are directed along the length of the furrow. Using a combination of genetic and mechanical perturbations that alter tissue shape, we demonstrate that geometrical and mechanical constraints act as cues to orient the cytoskeleton and tension during ventral furrow formation. We developed an in silico model of two-dimensional actomyosin meshwork contraction, demonstrating that actomyosin meshworks exhibit an inherent force orienting mechanism in response to mechanical constraints. Together, our in vivo and in silico data provide a framework for understanding how cells orient force generation, establishing a role for geometrical and mechanical patterning of force production in tissues.
机译:雕刻生物形状需要细胞产生具有适当方向性的力。因此,了解细胞如何定向细胞骨架以产生使组织变形的力至关重要。在果蝇胃管形成过程中,腹肌细胞中的肌动球蛋白收缩会产生一个长而狭窄的上皮沟,称为腹沟,其中,肌动球蛋白纤维和张力沿着沟的长度方向。使用遗传和机械扰动的组合来改变组织的形状,我们证明了几何和机械约束充当在腹沟形成过程中定向细胞骨架和张力的线索。我们开发了二维肌动球蛋白网孔收缩的计算机模型,证明了肌动球蛋白网孔表现出固有的力定向机制,以响应机械约束。总之,我们的体内和计算机模拟数据为了解细胞如何定向力产生提供了框架,从而为组织中力产生的几何和机械模式奠定了基础。

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