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Socius是一种新型的与Rnd GTP酶相互作用的蛋白质,参与肌动蛋白应力纤维的解聚。

Socius is a novel Rnd GTPase-interacting protein involved in disassembly of actin stress fibers.

作者信息

Katoh Hironori, Harada Amane, Mori Kazutoshi, Negishi Manabu

机构信息

Laboratory of Molecular Neurobiology, Graduate School of Biostudies, Kyoto University, Sakyo-ku, Kyoto 606-8502, Japan.

出版信息

Mol Cell Biol. 2002 May;22(9):2952-64. doi: 10.1128/MCB.22.9.2952-2964.2002.

Abstract

Rho family small GTPases are key regulators of the actin cytoskeleton in various cell types. The Rnd proteins, Rnd1, Rnd2, and Rnd3/RhoE, have been recently identified as new members of the Rho family of GTPases, and expression of Rnd1 or Rnd3 in fibroblasts causes the disassembly of actin stress fibers and the retraction of the cell body to produce extensively branching cellular processes. Here we have performed a yeast two-hybrid screening by using Rnd1 as bait and identified a novel protein that specifically binds to Rnd GTPases. We named this protein Socius. Socius directly binds to Rnd GTPases through its COOH-terminal region. When transfected into COS-7 cells, Socius is translocated to the cell periphery in response to Rnd1 and Rnd3 and colocalized with the GTPases. While expression of wild-type Socius in Swiss 3T3 fibroblasts has little effect on the actin cytoskeleton, the expression of a membrane-targeted form of Socius, containing a COOH-terminal farnesylation motif (Socius-CAAX), induces a dramatic loss of stress fibers. The inhibitory effect of Socius-CAAX on stress fiber formation is enhanced by truncation of its NH(2) terminus. On the other hand, the expression of Socius-CAAX or its NH(2) terminus-truncated form suppresses the Rnd-induced retraction of the cell body and the production of extensively branching cellular processes, although the disassembly of stress fibers is observed. We propose that Socius participates in the Rnd GTPase-induced signal transduction pathways, leading to reorganization of the actin cytoskeleton.

摘要

Rho家族小GTP酶是多种细胞类型中肌动蛋白细胞骨架的关键调节因子。Rnd蛋白,即Rnd1、Rnd2和Rnd3/RhoE,最近被鉴定为GTP酶Rho家族的新成员,在成纤维细胞中表达Rnd1或Rnd3会导致肌动蛋白应力纤维解体以及细胞体回缩,从而产生广泛分支的细胞突起。在此,我们以Rnd1为诱饵进行了酵母双杂交筛选,并鉴定出一种能特异性结合Rnd GTP酶的新型蛋白质。我们将此蛋白命名为Socius。Socius通过其COOH末端区域直接结合Rnd GTP酶。当转染到COS-7细胞中时,Socius会响应Rnd1和Rnd3转位到细胞周边,并与GTP酶共定位。虽然在瑞士3T3成纤维细胞中表达野生型Socius对肌动蛋白细胞骨架影响不大,但含有COOH末端法尼基化基序(Socius-CAAX)的膜靶向形式的Socius的表达会导致应力纤维显著丧失。Socius-CAAX对应力纤维形成的抑制作用通过截短其NH(2)末端而增强。另一方面,Socius-CAAX或其NH(2)末端截短形式的表达会抑制Rnd诱导的细胞体回缩和广泛分支细胞突起的产生,尽管观察到应力纤维解体。我们提出Socius参与Rnd GTP酶诱导的信号转导途径,导致肌动蛋白细胞骨架的重组。

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