Pylypenko Olena, Hammich Hussein, Yu I-Mei, Houdusse Anne
a Structural Motility, Institut Curie , PSL Research University, CNRS, UMR 144 , Paris , France.
b Sorbonne Universités , UPMC Univ Paris 06, Sorbonne Universités, IFD , Paris , France.
Small GTPases. 2018 Mar 4;9(1-2):22-48. doi: 10.1080/21541248.2017.1336191. Epub 2017 Jul 7.
Rab molecular switches are key players in defining membrane identity and regulating intracellular trafficking events in eukaryotic cells. In spite of their global structural similarity, Rab-family members acquired particular features that allow them to perform specific cellular functions. The overall fold and local sequence conservations enable them to utilize a common machinery for prenylation and recycling; while individual Rab structural differences determine interactions with specific partners such as GEFs, GAPs and effector proteins. These interactions orchestrate the spatiotemporal regulation of Rab localization and their turning ON and OFF, leading to tightly controlled Rab-specific functionalities such as membrane composition modifications, recruitment of molecular motors for intracellular trafficking, or recruitment of scaffold proteins that mediate interactions with downstream partners, as well as actin cytoskeleton regulation. In this review we summarize structural information on Rab GTPases and their complexes with protein partners in the context of partner binding specificity and functional outcomes of their interactions in the cell.
Rab分子开关是真核细胞中定义膜身份和调节细胞内运输事件的关键参与者。尽管Rab家族成员在整体结构上具有相似性,但它们获得了特定的特征,使其能够执行特定的细胞功能。整体折叠和局部序列保守性使它们能够利用共同的机制进行异戊二烯化和循环利用;而单个Rab的结构差异决定了它们与特定伙伴(如鸟嘌呤核苷酸交换因子(GEF)、GTP酶激活蛋白(GAP)和效应蛋白)的相互作用。这些相互作用协调了Rab定位的时空调节及其开启和关闭,从而导致对Rab特异性功能的严格控制,如膜成分修饰、招募用于细胞内运输的分子马达,或招募介导与下游伙伴相互作用的支架蛋白,以及肌动蛋白细胞骨架调节。在本综述中,我们在伙伴结合特异性及其在细胞内相互作用的功能结果的背景下,总结了Rab GTP酶及其与蛋白质伙伴复合物的结构信息。