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Patterns in Space: Coordinating Adhesion and Actomyosin Contractility at E-cadherin Junctions

机译:空间模式:在E-钙粘蛋白连接处协调粘附和放线菌素的收缩。

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Cadherin adhesion receptors are fundamental determinants of tissue organization in health and disease. Increasingly, we have come to appreciate that classical cadherins exert their biological actions through active cooperation with the contractile actin cytoskeleton. Rather than being passive resistors of detachment forces, cadherins can regulate the assembly and mechanics of the contractile apparatus itself. Moreover, coordinate spatial patterning of adhesion and contractility is emerging as a determinant of morphogenesis. Here we review recent developments in cadherins and actin cytoskeleton cooperativity, by focusing on E-cadherin adhesive patterning in the epithelia. Next, we discuss the underlying principles of cellular rearrangement during Drosophila germband extension and epithelial cell extrusion, as models of how planar and apical–lateral patterns of contractility organize tissue architecture.
机译:钙黏着蛋白粘附受体是健康和疾病中组织组织的基本决定因素。我们越来越认识到经典钙粘蛋白通过与收缩性肌动蛋白细胞骨架的积极合作发挥其生物学作用。钙黏着蛋白不是调节剥离力的无源电阻,而是可以调节收缩装置本身的组装和力学。此外,粘附性和收缩性的协调空间模式正在形成,作为形态发生的决定因素。在这里,我们通过关注上皮中的E-钙粘着蛋白粘附模式,来回顾钙粘着蛋白和肌动蛋白细胞骨架协同性的最新发展。接下来,我们讨论果蝇种带延伸和上皮细胞挤压过程中细胞重排的基本原理,作为平面和顶侧收缩模式如何组织组织结构的模型。

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