Dynamic TOM–TIM23 supercomplex directs mitochondrial protein translocation and sorting

Yuqi Yang, Shanshan Wang, Guopeng Wang, Yuke Lian, Lingfeng Xue, Wenhong Jiang, Qiang Guo, Chen Song, Long Li
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Abstract

The mitochondrial translocase of the outer membrane (TOM) and translocase of the inner membrane 23 (TIM23) complexes are coupled to control protein import across the outer and inner membranes, respectively. However, the mechanisms of protein recognition and sorting in the TOM–TIM23 pathway remain unclear. Here we report cryo-electron microscopy structures of a translocating polypeptide substrate captured in the active TOM–TIM23 supercomplex from Saccharomyces cerevisiae. In the TOM complex, the polypeptide substrate adopts multiple conformations stabilized by hydrophilic residues from distinct regions of the Tom40 channel. In the TIM23 complex, the Tim17 and Mgr2 subunits create the translocation pathway, with a central restriction formed by four highly conserved hydrophobic residues. The substrate primarily interacts with hydrophobic residues along the Tim17–Mgr2 pathway. Substrate hydrophobicity modulates the association of Mgr2 with Tim17, enabling dynamic regulation of protein sorting toward either the matrix or membrane. These findings reveal a sophisticated translocation mechanism of the TOM–TIM23 supercomplex that ensures the efficient import of diverse mitochondrial proteins.

Abstract Image

动态TOM-TIM23超复合体指导线粒体蛋白易位和分选
线粒体外膜转位酶(TOM)和内膜转位酶23 (TIM23)复合物分别偶联以控制蛋白质在外膜和内膜上的输入。然而,TOM-TIM23通路中蛋白质识别和分选的机制尚不清楚。在这里,我们报告了从酿酒酵母活性TOM-TIM23超复合体中捕获的易位多肽底物的低温电子显微镜结构。在TOM配合物中,多肽底物采用来自Tom40通道不同区域的亲水性残基稳定的多种构象。在TIM23复合体中,Tim17和Mgr2亚基创建了易位途径,其中心限制由四个高度保守的疏水残基形成。底物主要沿着Tim17-Mgr2途径与疏水残基相互作用。底物疏水性调节Mgr2与Tim17的结合,使蛋白质向基质或膜分选的动态调节成为可能。这些发现揭示了TOM-TIM23超复合体的复杂易位机制,确保了各种线粒体蛋白的有效输入。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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