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线粒体伴侣蛋白TIM9.10的晶体结构揭示了一种六叶α螺旋桨结构。

Crystal structure of the mitochondrial chaperone TIM9.10 reveals a six-bladed alpha-propeller.

作者信息

Webb Chaille T, Gorman Michael A, Lazarou Michael, Ryan Michael T, Gulbis Jacqueline M

机构信息

Structural Biology Division, The Walter and Eliza Hall Institute of Medical Research, 1G Royal Parade, Parkville, Victoria 3050, Australia.

出版信息

Mol Cell. 2006 Jan 6;21(1):123-33. doi: 10.1016/j.molcel.2005.11.010.

Abstract

Import of proteins into mitochondria occurs by coordinated actions of preprotein translocases in the outer and inner membranes. Tim9 and Tim10 are translocase components of the intermembrane space, related to deafness-dystonia peptide 1 (DDP1). They coassemble into a hexamer, TIM9.10, which captures and chaperones precursors of inner membrane metabolite carriers as they exit the TOM channel in the outer membrane. The crystal structure of TIM9.10 reveals a previously undescribed alpha-propeller topology in which helical "blades" radiate from a narrow central pore lined with polar residues. The propeller blades are reminiscent of "tentacles" in chaperones Skp and prefoldin. In each TIM9.10 subunit, a signature "twin CX3C" motif forms two intramolecular disulfides. There is no obvious binding pocket for precursors, which we suggest employ the chaperone-like tentacles of TIM9.10 as surrogate lipid contacts. The first reported crystal structure of a mitochondrial translocase assembly provides insights into selectivity and regulation of precursor import.

摘要

蛋白质进入线粒体是通过外膜和内膜中前体蛋白转位酶的协同作用来实现的。Tim9和Tim10是膜间隙转位酶的组成成分,与耳聋 - 肌张力障碍肽1(DDP1)相关。它们共同组装成六聚体TIM9.10,当内膜代谢物载体的前体从外膜中的TOM通道出来时,TIM9.10会捕获并陪伴这些前体。TIM9.10的晶体结构揭示了一种以前未描述过的α - 螺旋桨拓扑结构,其中螺旋“叶片”从一个由极性残基排列的狭窄中央孔中辐射出来。螺旋桨叶片让人联想到伴侣蛋白Skp和预折叠蛋白中的“触角”。在每个TIM9.10亚基中,一个标志性的“双CX3C”基序形成两个分子内二硫键。没有明显的前体结合口袋,我们认为前体利用TIM9.10类似伴侣蛋白的触角作为替代脂质接触。首次报道的线粒体转位酶组装体的晶体结构为前体导入的选择性和调控提供了见解。

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