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小GTP酶Rab5的两种不同效应器在内吞膜融合过程中协同作用。

Two distinct effectors of the small GTPase Rab5 cooperate in endocytic membrane fusion.

作者信息

Gournier H, Stenmark H, Rybin V, Lippé R, Zerial M

机构信息

European Molecular Biology Laboratory, Postfach 10.2209, D-69012 Heidelberg, Germany.

出版信息

EMBO J. 1998 Apr 1;17(7):1930-40. doi: 10.1093/emboj/17.7.1930.

Abstract

Using the yeast two-hybrid system, we have identified a novel 62 kDa coiled-coil protein that specifically interacts with the GTP-bound form of Rab5, a small GTPase that regulates membrane traffic in the early endocytic pathway. This protein shares 42% sequence identity with Rabaptin-5, a previously identified effector of Rab5, and we therefore named it Rabaptin-5beta. Like Rabaptin-5, Rabaptin-5beta displays heptad repeats characteristic of coiled-coil proteins and is recruited on the endosomal membrane by Rab5 in a GTP-dependent manner. However, Rabaptin-5beta has features that distinguish it from Rabaptin-5. The relative expression levels of the two proteins varies in different cell types. Rabaptin-5beta does not heterodimerize with Rabaptin-5, and forms a distinct complex with Rabex-5, the GDP/GTP exchange factor for Rab5. Immunodepletion of the Rabaptin-5beta complex from cytosol only partially inhibits early endosome fusion in vitro, whereas the additional depletion of the Rabaptin-5 complex has a stronger inhibitory effect. Fusion activity can mostly be recovered by addition of the Rabaptin-5 complex alone, but maximal fusion efficiency requires the presence of both Rabaptin-5 and Rabaptin-5beta complexes. Our results suggest that Rab5 binds to at least two distinct effectors which cooperate for optimal endocytic membrane docking and fusion.

摘要

利用酵母双杂交系统,我们鉴定出一种新的62 kDa卷曲螺旋蛋白,它能与Rab5的GTP结合形式特异性相互作用,Rab5是一种调节早期内吞途径中膜运输的小GTP酶。该蛋白与Rabaptin-5(一种先前鉴定的Rab5效应蛋白)具有42%的序列同一性,因此我们将其命名为Rabaptin-5β。与Rabaptin-5一样,Rabaptin-5β也具有卷曲螺旋蛋白特有的七肽重复序列,并以GTP依赖的方式被Rab5募集到内体膜上。然而,Rabaptin-5β具有一些与Rabaptin-5不同的特征。这两种蛋白的相对表达水平在不同细胞类型中有所不同。Rabaptin-5β不与Rabaptin-5形成异二聚体,而是与Rab5的GDP/GTP交换因子Rabex-5形成独特的复合物。从细胞质中免疫去除Rabaptin-5β复合物仅部分抑制体外早期内体融合,而额外去除Rabaptin-5复合物则具有更强的抑制作用。融合活性大多可通过单独添加Rabaptin-5复合物恢复,但最大融合效率需要同时存在Rabaptin-5和Rabaptin-5β复合物。我们的结果表明,Rab5与至少两种不同的效应蛋白结合,它们协同作用以实现最佳的内吞膜对接和融合。

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