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Rab11介导FIP3募集至循环内体的结构基础。

Structural basis for Rab11-mediated recruitment of FIP3 to recycling endosomes.

作者信息

Eathiraj Sudharshan, Mishra Ashwini, Prekeris Rytis, Lambright David G

机构信息

Program in Molecular Medicine and Department of Biochemistry & Molecular Pharmacology, University of Massachusetts Medical School, Worcester, MA 01605, USA.

出版信息

J Mol Biol. 2006 Nov 24;364(2):121-35. doi: 10.1016/j.jmb.2006.08.064. Epub 2006 Aug 26.

Abstract

The Rab11 GTPase regulates recycling of internalized plasma membrane receptors and is essential for completion of cytokinesis. A family of Rab11 interacting proteins (FIPs) that conserve a C-terminal Rab-binding domain (RBD) selectively recognize the active form of Rab11. Normal completion of cytokinesis requires a complex between Rab11 and FIP3. Here, we report the crystal structure and mutational analysis of a heterotetrameric complex between constitutively active Rab11 and a FIP3 construct that includes the RBD. Two Rab11 molecules bind to dyad symmetric sites at the C terminus of FIP3, which forms a non-canonical coiled-coiled dimer with a flared C terminus and hook region. The RBD overlaps with the coiled coil and extends through the C-terminal hook. Although FIP3 engages the switch and interswitch regions of Rab11, the mode of interaction differs significantly from that of other Rab-effector complexes. In particular, the switch II region undergoes a large structural rearrangement from an ordered but non-complementary active conformation to a remodeled conformation that facilitates the interaction with FIP3. Finally, we provide evidence that FIP3 can form homo-oligomers in cells, and that a critical determinant of Rab11 binding in vitro is necessary for FIP3 recruitment to recycling endosomes during cytokinesis.

摘要

Rab11 GTP酶调节内化质膜受体的循环利用,对胞质分裂的完成至关重要。一类保守C端Rab结合结构域(RBD)的Rab11相互作用蛋白(FIPs)选择性识别Rab11的活性形式。胞质分裂的正常完成需要Rab11和FIP3之间形成复合物。在此,我们报道了组成型活性Rab11与包含RBD的FIP3构建体之间异源四聚体复合物的晶体结构和突变分析。两个Rab11分子结合到FIP3 C端的二元对称位点,FIP3形成具有扩张C端和钩状区域的非典型卷曲螺旋二聚体。RBD与卷曲螺旋重叠并延伸穿过C端钩。尽管FIP3与Rab11的开关区和开关间区相互作用,但其相互作用模式与其他Rab效应复合物显著不同。特别是,开关II区经历了从有序但不互补的活性构象到重塑构象的大的结构重排,这有利于与FIP3相互作用。最后,我们提供证据表明FIP3能在细胞中形成同型寡聚体,并且体外Rab11结合的关键决定因素对于胞质分裂期间FIP3募集到回收内体是必需的。

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