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连接蛋白和顶端连接蛋白对其表达和功能的相互影响。

Reciprocal influence of connexins and apical junction proteins on their expressions and functions.

作者信息

Derangeon Mickaël, Spray David C, Bourmeyster Nicolas, Sarrouilhe Denis, Hervé Jean-Claude

机构信息

Institut de Physiologie et Biologie Cellulaires, Université de Poitiers, Poitiers, F-86022, France.

出版信息

Biochim Biophys Acta. 2009 Apr;1788(4):768-78. doi: 10.1016/j.bbamem.2008.10.023. Epub 2008 Nov 11.

Abstract

Membranes of adjacent cells form intercellular junctional complexes to mechanically anchor neighbour cells (anchoring junctions), to seal the paracellular space and to prevent diffusion of integral proteins within the plasma membrane (tight junctions) and to allow cell-to-cell diffusion of small ions and molecules (gap junctions). These different types of specialised plasma membrane microdomains, sharing common adaptor molecules, particularly zonula occludens proteins, frequently present intermingled relationships where the different proteins co-assemble into macromolecular complexes and their expressions are co-ordinately regulated. Proteins forming gap junction channels (connexins, particularly) and proteins fulfilling cell attachment or forming tight junction strands mutually influence expression and functions of one another.

摘要

相邻细胞的膜形成细胞间连接复合体,以机械方式锚定相邻细胞(锚定连接),封闭细胞旁间隙并防止整合蛋白在质膜内扩散(紧密连接),以及允许小离子和分子在细胞间扩散(间隙连接)。这些不同类型的特化质膜微结构域,共享共同的衔接分子,特别是闭合蛋白,经常呈现相互交织的关系,其中不同的蛋白质共同组装成大分子复合物,并且它们的表达受到协同调节。形成间隙连接通道的蛋白质(特别是连接蛋白)以及实现细胞附着或形成紧密连接链的蛋白质相互影响彼此的表达和功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7efe/2666103/d93dfc47d73a/nihms94042f1.jpg

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