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Rabs亚家族中的一个进化保守结构域对于与鸟苷酸交换因子Mss4的相互作用至关重要。

An evolutionarily conserved domain in a subfamily of Rabs is crucial for the interaction with the guanyl nucleotide exchange factor Mss4.

作者信息

Burton J L, Slepnev V, De Camilli P V

机构信息

Department of Cell Biology, Howard Hughes Medical Institute, Yale University School of Medicine, New Haven, Connecticut 06510, USA.

出版信息

J Biol Chem. 1997 Feb 7;272(6):3663-8. doi: 10.1074/jbc.272.6.3663.

Abstract

Mss4 is a guanine nucleotide exchange factor that specifically binds to, and promotes GDP-GTP exchange on, a subset of the Rab GTPases (Burton, J. L., Burns, M. E., Gatti, E., Augustine, G. J., and De Camilli, P. (1994) EMBO J. 13, 5547-5558). In order to identify the domain(s) of the GTPase that is important for this interaction, protein chimeras were constructed between Rab3a, which binds Mss4, and Rab5a, which does not bind Mss4. We have identified the amino-terminal portion of Rab3a as the Mss4-binding region, with the effector domain being critically required for binding and the flanking regions further enhancing the interaction. Sequence comparisons have revealed that Mss4-binding Rabs share more homology with each other than with Rabs that do not bind Mss4. The region of highest homology between these Rabs, which defines them as members of the same evolutionary branch within the Rab subfamily, coincides with the domain shown here to be critical for Mss4 binding. A mutation in the zinc-binding domain of Mss4 (Mss4 D96H), a region that is highly conserved between Mss4 and its yeast homologue Dss4, completely abolished its property to bind to, and promote GDP-GTP exchange on, Rab3a. Thus, the preservation of the Mss4/Dss4-GTPase interaction appears to have been a critical factor in the evolution of this subset of Rab proteins.

摘要

Mss4是一种鸟嘌呤核苷酸交换因子,它特异性地结合Rab GTPases的一个子集,并促进其GDP-GTP交换(伯顿,J. L.,伯恩斯,M. E.,加蒂,E.,奥古斯丁,G. J.,和德卡米利,P.(1994年)《欧洲分子生物学组织杂志》13卷,5547 - 5558页)。为了确定对这种相互作用重要的GTPase结构域,构建了在能结合Mss4的Rab3a和不能结合Mss4的Rab5a之间的蛋白质嵌合体。我们已确定Rab3a的氨基末端部分为Mss4结合区域,效应器结构域对于结合至关重要,侧翼区域进一步增强了这种相互作用。序列比较显示,与不结合Mss4的Rabs相比,结合Mss4的Rabs彼此之间具有更多同源性。这些Rabs之间同源性最高的区域,将它们定义为Rab亚家族中同一进化分支的成员,与这里显示的对Mss4结合至关重要的结构域重合。Mss4锌结合结构域中的一个突变(Mss4 D96H),该区域在Mss4与其酵母同源物Dss4之间高度保守,完全消除了它结合Rab3a并促进其GDP-GTP交换的特性。因此,Mss4/Dss4 - GTPase相互作用的保留似乎是Rab蛋白这一子集进化中的一个关键因素。

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