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Joining forces: crosstalk between biochemical signalling and physical forces orchestrates cellular polarity and dynamics

机译:联合力:生化信号与物理力之间的串扰可协调细胞的极性和动力学

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摘要

Dynamic processes like cell migration and morphogenesis emerge from the self-organized interaction between signalling and cytoskeletal rearrangements. How are these molecular to sub-cellular scale processes integrated to enable cell-wide responses? A growing body of recent studies suggest that forces generated by cytoskeletal dynamics and motor activity at the cellular or tissue scale can organize processes ranging from cell movement, polarity and division to the coordination of responses across fields of cells. To do so, forces not only act mechanically but also engage with biochemical signalling. Here, we review recent advances in our understanding of this dynamic crosstalk between biochemical signalling, self-organized cortical actomyosin dynamics and physical forces with a special focus on the role of membrane tension in integrating cellular motility.This article is part of the theme issue ‘Self-organization in cell biology’.
机译:诸如细胞迁移和形态发生的动态过程是由信号传导和细胞骨架重排之间的自组织相互作用产生的。这些分子到亚细胞尺度的过程如何整合以实现全细胞反应?越来越多的最新研究表明,由细胞骨架动力学和细胞或组织规模的运动活动产生的力可以组织从细胞运动,极性和分裂到跨细胞场反应协调的过程。为此,力不仅会机械作用,还会与生化信号产生作用。在这里,我们回顾了对生化信号,自组织皮质放线肌球蛋白动力学和物理力之间这种动态串扰的理解的最新进展,特别关注了膜张力在整合细胞运动中的作用。本文是主题“细胞生物学的自组织”。

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