首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >The roles of catenins in the cadherin-mediated cell adhesion: functional analysis of E-cadherin-alpha catenin fusion molecules
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The roles of catenins in the cadherin-mediated cell adhesion: functional analysis of E-cadherin-alpha catenin fusion molecules

机译:连环素在钙黏着蛋白介导的细胞粘附中的作用:E-钙黏着蛋白-α连环素融合分子的功能分析

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摘要

The carboxyl terminus-truncated cadherin (nonfunctional cadherin) has no cell adhesion activity probably because of its failure to associate with cytoplasmic proteins called alpha and beta catenin. To rescue this nonfunctional cadherin as adhesion molecules, we constructed three cDNAs for fusion proteins between nonfunctional E-cadherin and alpha catenin, nE alpha, nE alpha N, and nE alpha C, where the intact, amino- terminal and carboxy-terminal half of alpha catenin, respectively, were directly linked to the nonfunctional E-cadherin, and introduced them into mouse L cells. The subcellular distribution and cell adhesion activity of nE alpha and nE alpha C molecules was similar to those of intact E-cadherin transfectants: they bound to cytoskeletons, were concentrated at cell-cell adhesion sites and showed strong cell adhesion activity. nE alpha N molecules, which also bound to cytoskeletons, showed very poor cell adhesion activity. Taken together, we conclude that in the formation of the cadherin-catenin complex, the mechanical association of alpha catenin, especially its carboxy- terminal half, with E-cadherin is a key step for the cadherin-mediated cell adhesion. Close comparison revealed that the behavior of nE alpha molecules during cytokinesis was quite different from that of intact E- cadherin, and that the intercellular motility, i.e., the cell movement in a confluent sheet, was significantly suppressed in nE alpha transfectants although it was facilitated in E-cadherin transfectants. Considering that nE alpha was not associated with endogenous beta catenin in transfectants, the difference in the nature of cell adhesion between nE alpha and intact E-cadherin transfectants may be explained by the function of beta catenin. The possible functions of beta catenin are discussed with a special reference to its role as a negative regulator for the cadherin-mediated cell adhesion system.
机译:羧基末端截短的钙黏着蛋白(非功能性钙黏着蛋白)没有细胞粘附活性,可能是因为它无法与称为α和β连环蛋白的胞质蛋白结合。为了拯救这种非功能性钙粘蛋白作为粘附分子,我们构建了三个cDNA,用于非功能性E-钙粘蛋白与αcatenin,nE alpha,nE alpha N和nE alpha C之间的融合蛋白,其中完整,氨基末端和羧基末端的一半分别将alpha catenin直接连接至非功能性E-cadherin,并将其引入小鼠L细胞。 nE alpha和nE alpha C分子的亚细胞分布和细胞粘附活性与完整的E-钙粘蛋白转染子相似:它们与细胞骨架结合,集中在细胞-细胞粘附位点,并表现出强大的细胞粘附活性。也与细胞骨架结合的nEαN分子显示出非常差的细胞粘附活性。两者合计,我们得出结论,在钙粘蛋白-连环蛋白复合物的形成中,α-连环蛋白,特别是其羧基末端的一半与E-钙粘蛋白的机械结合是钙粘蛋白介导的细胞粘附的关键步骤。密切的比较表明,nEα分子在胞质分裂过程中的行为与完整的E- cadherin的行为有很大不同,并且尽管促进了nEα转染子的细胞间运动,即汇合片中的细胞运动,但其被促进了在E-钙粘蛋白转染子中。考虑到转染子中nE alpha与内源性β-连环蛋白不相关,nEα和完整的E-钙粘蛋白转染子之间细胞粘附性质的差异可以用β-连环蛋白的功能来解释。讨论了β连环蛋白的可能功能,并特别提及了其作为钙粘蛋白介导的细胞粘附系统的负调节剂的作用。

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