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缢缩蛋白通过组织Rho-GTP和肌动球蛋白在细胞连接部位的聚集来调节细胞间连接的完整性。

Anillin regulates cell-cell junction integrity by organizing junctional accumulation of Rho-GTP and actomyosin.

作者信息

Reyes Ciara C, Jin Meiyan, Breznau Elaina B, Espino Rhogelyn, Delgado-Gonzalo Ricard, Goryachev Andrew B, Miller Ann L

机构信息

The Cellular and Molecular Biology Program, University of Michigan, Ann Arbor, MI 48109, USA.

Department of Molecular, Cellular, and Developmental Biology, University of Michigan, Ann Arbor, MI 48109, USA.

出版信息

Curr Biol. 2014 Jun 2;24(11):1263-70. doi: 10.1016/j.cub.2014.04.021. Epub 2014 May 15.

Abstract

Anillin is a scaffolding protein that organizes and stabilizes actomyosin contractile rings and was previously thought to function primarily in cytokinesis [1-10]. Using Xenopus laevis embryos as a model system to examine Anillin's role in the intact vertebrate epithelium, we find that a population of Anillin surprisingly localizes to epithelial cell-cell junctions throughout the cell cycle, whereas it was previously thought to be nuclear during interphase [5, 11]. Furthermore, we show that Anillin plays a critical role in regulating cell-cell junction integrity. Both tight junctions and adherens junctions are disrupted when Anillin is knocked down, leading to altered cell shape and increased intercellular spaces. Anillin interacts with Rho, F-actin, and myosin II [3, 8, 9], all of which regulate cell-cell junction structure and function. When Anillin is knocked down, active Rho (Rho-guanosine triphosphate [GTP]), F-actin, and myosin II are misregulated at junctions. Indeed, increased dynamic "flares" of Rho-GTP are observed at cell-cell junctions, whereas overall junctional F-actin and myosin II accumulation is reduced when Anillin is depleted. We propose that Anillin is required for proper Rho-GTP distribution at cell-cell junctions and for maintenance of a robust apical actomyosin belt, which is required for cell-cell junction integrity. These results reveal a novel role for Anillin in regulating epithelial cell-cell junctions.

摘要

膜收缩蛋白是一种支架蛋白,可组织并稳定肌动球蛋白收缩环,此前认为其主要在胞质分裂中发挥作用[1-10]。我们以非洲爪蟾胚胎作为模型系统来研究膜收缩蛋白在完整脊椎动物上皮中的作用,发现有一群膜收缩蛋白在整个细胞周期中惊人地定位于上皮细胞间连接,而此前认为它在间期位于细胞核中[5, 11]。此外,我们表明膜收缩蛋白在调节细胞间连接完整性方面发挥关键作用。当膜收缩蛋白被敲低时,紧密连接和黏着连接都会被破坏,导致细胞形状改变和细胞间隙增加。膜收缩蛋白与Rho、F-肌动蛋白和肌球蛋白II相互作用[3, 8, 9],所有这些都调节细胞间连接的结构和功能。当膜收缩蛋白被敲低时,连接处的活性Rho(Rho-鸟苷三磷酸[GTP])、F-肌动蛋白和肌球蛋白II会被错误调节。事实上,在细胞间连接处观察到Rho-GTP的动态“耀斑”增加,而当膜收缩蛋白被耗尽时,连接处总的F-肌动蛋白和肌球蛋白II积累减少。我们提出,细胞间连接处的Rho-GTP正确分布以及维持强大的顶端肌动球蛋白带需要膜收缩蛋白,而这对于细胞间连接完整性是必需的。这些结果揭示了膜收缩蛋白在调节上皮细胞间连接方面的新作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd84/4043929/67b5418f4c2a/nihms585815f1.jpg

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