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Differential roles for actin polymerization and a myosin II motor in assembly of the epithelial apical junctional complex

机译:肌动蛋白聚合反应和肌球蛋白II马达在上皮根尖连接复合体组装中的不同作用

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Differentiation and polarization of epithelial cells depends on the formation of the apical junctional complex (AJC), which is composed of the tight junction (TJ) and the adherens junction (AJ). In this study, we investigated mechanisms of actin reorganization that drive the establishment of AJC. Using a calcium switch model, we observed that formation of the AJC in T84 intestinal epithelial cells began with the assembly of adherens-like junctions followed by the formation of TJs. Early adherens-like junctions and TJs readily incorporated exogenous G-actin and were disassembled by latrunculin B, thus indicating dependence on continuous actin polymerization. Both adherens-like junctions and TJs were enriched in actin-related protein 3 and neuronal Wiskott-Aldrich syndrome protein (N-WASP), and their assembly was prevented by the N-WASP inhibitor wiskostatin. in contrast, the formation of TJs, but not adherens-like junctions, was accompanied by recruitment of myosin II and was blocked by inhibition of myosin II with blebbistatin. In addition, blebbistatin inhibited the ability of epithelial cells to establish a columnar phenotype with proper apico-basal polarity. These findings suggest that actin polymerization directly mediates recruitment and maintenance of AJ/TJ proteins at intercellular contacts, whereas myosin II regulates cell polarization and correct positioning of the AJC within the plasma membrane.
机译:上皮细胞的分化和极化取决于顶端连接复合物(AJC)的形成,其由紧密连接(TJ)和粘附连接(AJ)组成。在这项研究中,我们调查了驱动AJC建立的肌动蛋白重组机制。使用钙转换模型,我们观察到T84肠上皮细胞中AJC的形成始于粘附样连接的组装,然后是TJ的形成。早期的粘附样连接和TJ容易掺入外源性G-肌动蛋白,并被latrunculin B分解,从而表明对连续肌动蛋白聚合的依赖性。粘附样连接和TJs都富含肌动蛋白相关蛋白3和神经元Wiskott-Aldrich综合征蛋白(N-WASP),并且它们的组装被N-WASP抑制剂wiskostatin阻止。相比之下,TJ的形成,而不是粘附样的连接,伴随着肌球蛋白II的募集,并被起珠抑素抑制。此外,blebbistatin抑制上皮细胞建立具有适当apico-basal极性的柱状表型的能力。这些发现表明肌动蛋白聚合反应直接介导细胞间接触处AJ / TJ蛋白的募集和维持,而肌球蛋白II调节细胞极化和AJC在质膜内的正确定位。

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