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鉴定Rab11为Evi5癌基因的一种小GTPase结合蛋白。

Identification of Rab11 as a small GTPase binding protein for the Evi5 oncogene.

作者信息

Westlake Christopher J, Junutula Jagath R, Simon Glenn C, Pilli Manohar, Prekeris Rytis, Scheller Richard H, Jackson Peter K, Eldridge Adam G

机构信息

Genentech, Inc., 1 DNA Way, South San Francisco, CA 94080, USA.

出版信息

Proc Natl Acad Sci U S A. 2007 Jan 23;104(4):1236-41. doi: 10.1073/pnas.0610500104. Epub 2007 Jan 17.

Abstract

The Evi5 oncogene has recently been shown to regulate the stability and accumulation of critical G(1) cell cycle factors including Emi1, an inhibitor of the anaphase-promoting complex/cyclosome, and cyclin A. Sequence analysis of the amino terminus of Evi5 reveals a Tre-2, Bub2, Cdc16 domain, which has been shown to be a binding partner and GTPase-activating protein domain for the Rab family of small Ras-like GTPases. Here we describe the identification of Evi5 as a candidate binding protein for Rab11, a GTPase that regulates intracellular transport and has specific roles in endosome recycling and cytokinesis. By yeast two-hybrid analysis, immunoprecipitation, and Biacore analysis, we demonstrate that Evi5 binds Rab11a and Rab11b in a GTP-dependent manner. However, Evi5 displays no activation of Rab11 GTPase activity in vitro. Evi5 colocalizes with Rab11 in vivo, and overexpression of Rab11 perturbs the localization of Evi5, redistributing it into Rab11-positive recycling endosomes. Interestingly, in vitro binding studies show that Rab11 effector proteins including FIP3 compete with Evi5 for binding to Rab11, suggesting a partitioning between Rab11-Evi5 and Rab11 effector complexes. Indeed, ablation of Evi5 by RNA interference causes a mislocalization of FIP3 at the abscission site during cytokinesis. These data demonstrate that Evi5 is a Rab11 binding protein and that Evi5 may cooperate with Rab11 to coordinate vesicular trafficking, cytokinesis, and cell cycle control independent of GTPase-activating protein function.

摘要

Evi5癌基因最近被证明可调节关键的G1期细胞周期因子的稳定性和积累,这些因子包括后期促进复合物/细胞周期体的抑制剂Emi1和细胞周期蛋白A。对Evi5氨基末端的序列分析揭示了一个Tre-2、Bub2、Cdc16结构域,该结构域已被证明是小Ras样GTP酶Rab家族的结合伴侣和GTP酶激活蛋白结构域。在此,我们描述了Evi5作为Rab11候选结合蛋白的鉴定,Rab11是一种调节细胞内运输并在内涵体循环和胞质分裂中具有特定作用的GTP酶。通过酵母双杂交分析、免疫沉淀和生物传感器分析,我们证明Evi5以GTP依赖的方式结合Rablla和Rabllb。然而,Evi5在体外未显示出对Rab11 GTP酶活性的激活。Evi5在体内与Rab11共定位,Rab11的过表达扰乱了Evi5的定位,将其重新分布到Rab11阳性的循环内涵体中。有趣的是,体外结合研究表明,包括FIP3在内的Rab11效应蛋白与Evi5竞争与Rab11的结合,这表明Rab11-Evi5和Rab11效应复合物之间存在分配。事实上,通过RNA干扰消除Evi5会导致胞质分裂期间FIP3在分裂位点的定位错误。这些数据表明Evi5是一种Rab11结合蛋白,并且Evi5可能与Rab11合作,以协调囊泡运输、胞质分裂和细胞周期控制,而与GTP酶激活蛋白功能无关。

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