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Depletion of E-Cadherin Disrupts Establishment but Not Maintenance of Cell Junctions in Madin-Darby Canine Kidney Epithelial Cells

机译:E-钙黏着蛋白的耗竭破坏了Madin-Darby犬肾肾上皮细胞中细胞连接的建立但没有维持

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摘要

E-cadherin forms calcium-dependent homophilic intercellular adhesions between epithelial cells. These contacts regulate multiple aspects of cell behavior, including the organization of intercellular tight junctions (TJs). To distinguish between the roles of E-cadherin in formation versus maintenance of junctions, Madin-Darby canine kidney (MDCK) cells were depleted of E-cadherin by RNA interference. Surprisingly, reducing E-cadherin expression had little effect on the protein levels or localization of adherens junction (AJ) or TJ markers. The cells underwent morphological changes, as the normally flat apical surface swelled into a dome. However, apical–basal polarity was not compromised, transmembrane resistance was normal, and zonula occludin protein 1 dynamics at the TJs were unchanged. Additionally, an E-cadherin/Cadherin-6 double knockdown also failed to disrupt established TJs, although β-catenin was lost from the cell cortex. Nevertheless, cells depleted of E-cadherin failed to properly reestablish cell polarity after junction disassembly. Recovery of cell–cell adhesion, transepithelial resistance, and the localization of TJ and AJ markers were all delayed. In contrast, depletion of α-catenin caused long-term disruption of junctions. These results indicate that E-cadherin and Cadherin-6 function as a scaffold for the construction of polarized structures, and they become largely dispensable in mature junctions, whereas α-catenin is essential for the maintenance of functional junctions.
机译:E-钙粘蛋白在上皮细胞之间形成钙依赖的同型细胞间粘附。这些接触调节细胞行为的多个方面,包括细胞间紧密连接(TJ)的组织。为了区分E-钙粘蛋白在形成和维持连接中的作用,通过RNA干扰使Madin-Darby犬肾(MDCK)细胞中的E-钙粘蛋白消耗掉。令人惊讶的是,降低E-钙粘着蛋白表达对蛋白质水平或粘附连接(AJ)或TJ标记的定位几乎没有影响。随着正常平坦的顶端表面膨胀成圆顶,细胞发生了形态变化。但是,根尖基极的极性没有受到损害,跨膜阻力正常,TJs的小带闭合蛋白1动力学没有变化。此外,尽管β-catenin从细胞皮层中丢失,但E-cadherin / Cadherin-6的双重敲除也未能破坏已建立的TJ。但是,在连接解体后,耗尽E-钙粘着蛋白的细胞无法正确地重建细胞极性。细胞间粘附的恢复,跨上皮抵抗以及TJ和AJ标记的定位均被延迟。相反,α-catenin的消耗会导致连接的长期破坏。这些结果表明,E-cadherin和Cadherin-6充当构建极化结构的支架,并且在成熟的连接处变得非常不可取,而α-catenin对于维持功能连接至关重要。

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