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Biochemical and structural analysis of α-catenin in cell-cell contacts

机译:细胞 - 细胞触点中α-catenin的生化与结构分析

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Cadherins are transmembrane adhesion molecules that mediate homotypic cell-cell contact. In adherens junctions, the cytoplasmic domain of cadherins is functionally linked to the actin cytoskeleton through a series of proteins known as catenins. E-cadherin binds to β-catenin, which in turn binds to α-catenin to form a ternary complex. α-Catenin also binds to actin, and it was assumed previously that α-catenin links the cadherin-catenin complex to actin. However, biochemical, structural and live-cell imaging studies of the cadherin-catenin complex and its interaction with actin show that binding of β-catenin to α-catenin prevents the latter from binding to actin. Biochemical and structural data indicate that α-catenin acts as an allosteric protein whose conformation and activity changes depending on whether or not it is bound to β-catenin. Initial contacts between cells occur on dynamic lamellipodia formed by polymerization of branched actin networks, a process controlled by the Arp2/3 (actin-related protein 2/3) complex. α-Catenin can suppress the activity of Arp2/3 by competing for actin filaments. These findings lead to a model for adherens junction formation in which clustering of the cadherin-β-catenin complex recruits high levels of α-catenin that can suppress the Arp2/3 complex, leading to cessation of lamellipodial movement and formation of a stable contact. Thus α-catenin appears to play a central role in cell-cell contact formation.
机译:Cadherins是介导均质细胞 - 细胞接触的跨膜粘附分子。在粘附的交界处,钙丝蛋白的细胞质结构域通过一系列称为Catenins的一系列蛋白质与肌动蛋白细胞骨架有效。 e-cadherin与β-连环蛋白结合,其又结合α-catenin以形成三元复合物。 α-catenin还与肌动蛋白结合,并以前认为α-catenin将钙粘蛋白 - 连子素复合物联系起来致动蛋白。然而,Cadherin-catenin复合物的生物化学,结构和活细胞成像研究及其与actin的相互作用表明,β-catenin与α-catenin的结合可防止后者与肌动蛋白结合。生物化学和结构数据表明α-catenin充当颠覆蛋白,其构象和活性根据其是否与β-catenin结合而变化。细胞之间的初始触点发生在通过分支肌动蛋白网络的聚合形成的动态层压绦虫上,由ARP2 / 3(肌动蛋白相关蛋白2/3)复合物控制的过程。 α-catenin可以通过竞争肌动蛋白细丝来抑制ARP2 / 3的活性。这些发现导致粘附结形成的模型,其中Cadherin-β-catenin复合物的聚类促进了可以抑制ARP2 / 3复合物的高水平的α-连环蛋白,导致层层运动和形成稳定接触的形成。因此,α-catenin似乎在细胞 - 细胞接触形成中起着核心作用。

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