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Rho1独立于p120连环蛋白调节果蝇黏着连接。

Rho1 regulates Drosophila adherens junctions independently of p120ctn.

作者信息

Fox Donald T, Homem Catarina C F, Myster Steven H, Wang Fei, Bain E Eugene, Peifer Mark

机构信息

Department of Biology, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.

出版信息

Development. 2005 Nov;132(21):4819-31. doi: 10.1242/dev.02056. Epub 2005 Oct 5.

Abstract

During animal development, adherens junctions (AJs) maintain epithelial cell adhesion and coordinate changes in cell shape by linking the actin cytoskeletons of adjacent cells. Identifying AJ regulators and their mechanisms of action are key to understanding the cellular basis of morphogenesis. Previous studies linked both p120catenin and the small GTPase Rho to AJ regulation and revealed that p120 may negatively regulate Rho. Here we examine the roles of these candidate AJ regulators during Drosophila development. We found that although p120 is not essential for development, it contributes to morphogenesis efficiency, clarifying its role as a redundant AJ regulator. Rho has a dynamic localization pattern throughout ovarian and embryonic development. It preferentially accumulates basally or basolaterally in several tissues, but does not preferentially accumulate in AJs. Further, Rho1 localization is not obviously altered by loss of p120 or by reduction of core AJ proteins. Genetic and cell biological tests suggest that p120 is not a major dose-sensitive regulator of Rho1. However, Rho1 itself appears to be a regulator of AJs. Loss of Rho1 results in ectopic accumulation of cytoplasmic DE-cadherin, but ectopic cadherin does not accumulate with its partner Armadillo. These data suggest Rho1 regulates AJs during morphogenesis, but this regulation is p120 independent.

摘要

在动物发育过程中,黏着连接(AJs)维持上皮细胞黏附,并通过连接相邻细胞的肌动蛋白细胞骨架来协调细胞形状的变化。鉴定AJ调节因子及其作用机制是理解形态发生细胞基础的关键。先前的研究将p120连环蛋白和小GTP酶Rho都与AJ调节联系起来,并揭示p120可能对Rho起负调节作用。在这里,我们研究这些候选AJ调节因子在果蝇发育过程中的作用。我们发现,虽然p120对发育不是必需的,但它有助于提高形态发生效率,阐明了其作为冗余AJ调节因子的作用。Rho在整个卵巢和胚胎发育过程中具有动态定位模式。它优先在几个组织的基部或基底外侧积累,但不在AJs中优先积累。此外,p120的缺失或核心AJ蛋白的减少不会明显改变Rho1的定位。遗传和细胞生物学测试表明,p120不是Rho1的主要剂量敏感调节因子。然而,Rho1本身似乎是AJs的调节因子。Rho1的缺失导致细胞质DE-钙黏蛋白异位积累,但异位钙黏蛋白不会与其伴侣犰狳一起积累。这些数据表明,Rho1在形态发生过程中调节AJs,但这种调节不依赖于p120。

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