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Gap Junction Channel Protein Innexin 2 Is Essential for Epithelial Morphogenesis in the Drosophila Embryo

机译:间隙连接通道蛋白Innexin 2是果蝇胚胎上皮形态发生所必需的。

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摘要

Direct communication of neighboring cells by gap junction channels is essential for the development of tissues and organs in the body. Whereas vertebrate gap junctions are composed of members of the connexin family of transmembrane proteins, in invertebrates gap junctions consist of Innexin channel proteins. Innexins display very low sequence homology to connexins. In addition, very little is known about their cellular role during developmental processes. In this report, we examined the function and the distribution of Drosophila Innexin 2 protein in embryonic epithelia. Both loss-of-function and gain-of-function innexin 2 mutants display severe developmental defects due to cell death and a failure of proper epithelial morphogenesis. Furthermore, immunohistochemical analyses using antibodies against the Innexins 1 and 2 indicate that the distribution of Innexin gap junction proteins to specific membrane domains is regulated by tissue specific factors. Finally, biochemical interaction studies together with genetic loss- and gain-of-function experiments provide evidence that Innexin 2 interacts with core proteins of adherens and septate junctions. This is the first study, to our knowledge, of cellular distribution and protein–protein interactions of an Innexin gap junctional channel protein in the developing epithelia of Drosophila.
机译:间隙连接通道通过邻近细胞的直接通讯对于体内组织和器官的发育至关重要。脊椎动物的缝隙连接由跨膜蛋白连接蛋白家族的成员组成,而在无脊椎动物中,缝隙连接由Innexin通道蛋白组成。 Innexins与连接蛋白的序列同源性很低。另外,关于它们在发育过程中的细胞作用的了解很少。在此报告中,我们检查了果蝇Innexin 2蛋白在胚胎上皮细胞中的功能和分布。功能丧失和功能获得的innexin 2突变体都显示出严重的发育缺陷,这是由于细胞死亡和正常的上皮形态发生失败所致。此外,使用针对Innexins 1和Innexins 2的抗体进行的免疫组织化学分析表明,Innexin间隙连接蛋白到特定膜结构域的分布受组织特异性因子调控。最后,生化相互作用研究以及遗传功能丧失和功能获得实验提供了证据,表明Innexin 2与粘附分子和分隔连接的核心蛋白相互作用。据我们所知,这是果蝇上皮形成过程中Innexin间隙连接通道蛋白的细胞分布和蛋白-蛋白相互作用的首次研究。

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