Edler Eileen, Stein Matthias
a Molecular Simulations and Design Group, Max Planck Institute for Dynamics of Complex Technical Systems , Magdeburg , Germany.
Small GTPases. 2019 May;10(3):227-242. doi: 10.1080/21541248.2017.1371268. Epub 2017 Oct 25.
The small GTPase Rab5 is the key regulator of early endosomal fusion. It is post-translationally modified by covalent attachment of two geranylgeranyl (GG) chains to adjacent cysteine residues of the C-terminal hypervariable region (HVR). The GDP dissociation inhibitor (GDI) recognizes membrane-associated Rab5(GDP) and serves to release it into the cytoplasm where it is kept in a soluble state. A detailed new structural and dynamic model for human Rab5(GDP) recognition and binding with human GDI at the early endosome membrane and in its dissociated state is presented. In the cytoplasm, the GDI protein accommodates the GG chains in a transient hydrophobic binding pocket. In solution, two different binding modes of the isoprenoid chains inserted into the hydrophobic pocket of the Rab5(GDP):GDI complex can be identified. This equilibrium between the two states helps to stabilize the protein-protein complex in solution. Interprotein contacts between the Rab5 switch regions and characteristic patches of GDI residues from the Rab binding platform (RBP) and the C-terminus coordinating region (CCR) reveal insight on the formation of such a stable complex. GDI binding to membrane-anchored Rab5(GDP) is initially mediated by the solvent accessible switch regions of the Rab-specific RBP. Formation of the membrane-associated Rab5(GDP):GDI complex induces a GDI reorientation to establish additional interactions with the Rab5 HVR. These results allow to devise a detailed structural model for the process of extraction of GG-Rab5(GDP) by GDI from the membrane and the dissociation from targeting factors and effector proteins prior to GDI binding.
小GTP酶Rab5是早期内体融合的关键调节因子。它通过将两条香叶基香叶基(GG)链共价连接到C末端高变区(HVR)的相邻半胱氨酸残基上进行翻译后修饰。GDP解离抑制剂(GDI)识别膜相关的Rab5(GDP),并将其释放到细胞质中,使其保持可溶状态。本文提出了一个详细的新结构和动力学模型,用于描述人Rab5(GDP)在早期内体膜上以及解离状态下与人GDI的识别和结合。在细胞质中,GDI蛋白将GG链容纳在一个短暂的疏水结合口袋中。在溶液中,可以识别出插入Rab5(GDP):GDI复合物疏水口袋中的类异戊二烯链的两种不同结合模式。这两种状态之间的平衡有助于稳定溶液中的蛋白质-蛋白质复合物。Rab5开关区域与来自Rab结合平台(RBP)和C末端协调区域(CCR)的GDI残基特征区域之间的蛋白质间接触揭示了这种稳定复合物形成的见解。GDI与膜锚定的Rab5(GDP)的结合最初由Rab特异性RBP的溶剂可及开关区域介导。膜相关的Rab5(GDP):GDI复合物的形成诱导GDI重新定向,以与Rab5 HVR建立额外的相互作用。这些结果有助于设计一个详细的结构模型,用于描述GDI从膜上提取GG-Rab5(GDP)以及在GDI结合之前从靶向因子和效应蛋白上解离的过程。