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Vinculin-dependent Cadherin mechanosensing regulates efficient epithelial barrier formation

机译:Vinculin依赖的钙黏着蛋白机械传感调节有效的上皮屏障形成

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Proper regulation of the formation and stabilization of epithelial cell–cell adhesion is crucial in embryonic morphogenesis and tissue repair processes. Defects in this process lead to organ malformation and defective epithelial barrier function. A combination of chemical and mechanical cues is used by cells to drive this process. We have investigated the role of the actomyosin cytoskeleton and its connection to cell–cell junction complexes in the formation of an epithelial barrier in MDCK cells. We find that the E-cadherin complex is sufficient to mediate a functional link between cell–cell contacts and the actomyosin cytoskeleton. This link involves the actin binding capacity of α-catenin and the recruitment of the mechanosensitive protein Vinculin to tensile, punctate cell–cell junctions that connect to radial F-actin bundles, which we name Focal Adherens Junctions (FAJ). When cell–cell adhesions mature, these FAJs disappear and linear junctions are formed that do not contain Vinculin. The rapid phase of barrier establishment (as measured by Trans Epithelial Electrical Resistance (TER)) correlates with the presence of FAJs. Moreover, the rate of barrier establishment is delayed when actomyosin contraction is blocked or when Vinculin recruitment to the Cadherin complex is prevented. Enhanced presence of Vinculin increases the rate of barrier formation. We conclude that E-cadherin-based FAJs connect forming cell–cell adhesions to the contractile actomyosin cytoskeleton. These specialized junctions are sites of Cadherin mechanosensing, which, through the recruitment of Vinculin, is a driving force in epithelial barrier formation.
机译:正确调节上皮细胞-细胞粘附的形成和稳定在胚胎形态发生和组织修复过程中至关重要。此过程中的缺陷会导致器官畸形和上皮屏障功能受损。细胞使用化学和机械线索的组合来驱动该过程。我们研究了放线菌素细胞骨架的作用及其与细胞间连接复合物的连接在MDCK细胞上皮屏障形成中的作用。我们发现,E-钙粘着蛋白复合物足以介导细胞间接触和放线菌素细胞骨架之间的功能联系。该链接涉及α-连环蛋白的肌动蛋白结合能力,以及将机械敏感性蛋白Vinculin募集到与放射状F-肌动蛋白束连接的点状,点状细胞-细胞连接处,我们将其命名为Focal Adherens Junctions(FAJ)。当细胞间粘附成熟时,这些FAJ消失,形成不含Vinculin的线性连接。屏障建立的快速阶段(通过跨上皮电阻(TER)测量)与FAJ的存在相关。此外,当放线肌球蛋白收缩被阻止或阻止Vinculin募集到钙黏着蛋白复合物时,屏障建立的速度就会延迟。 Vinculin的存在增加会增加屏障形成的速率。我们得出的结论是,基于E-钙粘着蛋白的FAJ将形成的细胞间粘附与收缩性放线菌素细胞骨架相连。这些专门的连接点是钙黏着蛋白机械感测的部位,通过募集Vinculin,这是上皮屏障形成的驱动力。

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