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Actin at cell-cell junctions is composed of two dynamic and functional populations.

机译:细胞-细胞连接处的肌动蛋白由两个动态和功能群体组成。

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摘要

The ability of epithelial cells to polarize requires cell-cell adhesion mediated by cadherin receptors. During cell-cell contact, the mechanism via which a flat, spread cell shape is changed into a tall, cuboidal epithelial morphology is not known. We found that cadherin-dependent adhesion modulates actin dynamics by triggering changes in actin organization both locally at junctions and within the rest of the cell. Upon induction of cell-cell contacts, two spatial actin populations are distinguishable: junctional actin and peripheral thin bundles. With time, the relative position of these two populations changes and becomes indistinguishable to form a cortical actin ring that is characteristic of mature, fully polarized epithelial cells. Junctional actin and thin actin bundles differ in their actin dynamics and mechanism of formation, and interestingly, have distinct roles during epithelial polarization. Whereas junctional actin stabilizes clustered cadherin receptors at cell-cell contacts, contraction of peripheral actin bundle is essential for an increase in the maximum height at the lateral domain during polarization (cuboidal morphology). Thus, both junctional actin and thin bundles are necessary, and cooperate with each other to generate a polarized epithelial morphology.
机译:上皮细胞极化的能力需要钙黏着蛋白受体介导的细胞间粘附。在细胞与细胞的接触过程中,将扁平的散布细胞形状改变为高大的长方体上皮形态的机制尚不清楚。我们发现,钙粘蛋白依赖性粘附通过触发肌动蛋白组织的变化,既可以在连接处也可以在细胞的其余部分内调节肌动蛋白的动力学。诱导细胞-细胞接触后,两个空间肌动蛋白群是可区分的:连接肌动蛋白和外围细束。随着时间的流逝,这两个种群的相对位置发生变化,变得难以区分,形成了皮质肌动蛋白环,该环是成熟的,完全极化的上皮细胞的特征。连接肌动蛋白束和细肌动蛋白束的肌动蛋白动力学和形成机理不同,有趣的是,它们在上皮极化过程中具有不同的作用。尽管连接肌动蛋白可稳定细胞-细胞接触处的成簇钙粘蛋白受体,但外围肌动蛋白束的收缩对于极化过程中(侧方形态)横向域最大高度的增加至关重要。因此,连接肌动蛋白和细束都是必需的,并且相互配合以产生极化的上皮形态。

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