Institute of Biochemistry and Molecular Biology, ZBMZ, Faculty of Medicine, University of Freiburg, 79104 Freiburg, Germany; Faculty of Biology, University of Freiburg, 79104 Freiburg, Germany.
Institute of Biochemistry and Molecular Biology, ZBMZ, Faculty of Medicine, University of Freiburg, 79104 Freiburg, Germany.
Cell Rep. 2022 Apr 5;39(1):110619. doi: 10.1016/j.celrep.2022.110619.
The presequence translocase (TIM23 complex) imports precursor proteins into the mitochondrial inner membrane and matrix. The presequence translocase-associated motor (PAM) provides a driving force for transport into the matrix. The J-protein Pam18 stimulates the ATPase activity of the mitochondrial Hsp70 (mtHsp70). Pam16 recruits Pam18 to the TIM23 complex to ensure protein import. The Pam16-Pam18 module also associates with components of the respiratory chain, but the function of the dual localization of Pam16-Pam18 is largely unknown. Here, we show that disruption of the Pam16-Pam18 heterodimer causes redistribution of Pam18 to the respiratory chain supercomplexes, where it forms a homodimer. Redistribution of Pam18 decreases protein import into mitochondria but stimulates mtHsp70-dependent assembly of respiratory chain complexes. We conclude that coupling to Pam16 differentially controls the dual function of Pam18. It recruits Pam18 to the TIM23 complex to promote protein import but attenuates the Pam18 function in the assembly of respiratory chain complexes.
前导序列转位酶(TIM23 复合物)将前体蛋白导入线粒体的内膜和基质中。前导序列转位酶相关的马达(PAM)为基质中的运输提供驱动力。J 蛋白 Pam18 刺激线粒体 Hsp70(mtHsp70)的 ATP 酶活性。Pam16 将 Pam18 募集到 TIM23 复合物中以确保蛋白质导入。Pam16-Pam18 模块还与呼吸链的组件相关联,但 Pam16-Pam18 的双重定位的功能在很大程度上是未知的。在这里,我们表明 Pam16-Pam18 异二聚体的破坏导致 Pam18 重新分布到呼吸链超复合物中,在那里它形成同源二聚体。Pam18 的重新分布减少了蛋白质向线粒体的导入,但刺激了 mtHsp70 依赖性呼吸链复合物的组装。我们得出结论,与 Pam16 的偶联差异控制着 Pam18 的双重功能。它将 Pam18 募集到 TIM23 复合物中以促进蛋白质导入,但减弱了 Pam18 在呼吸链复合物组装中的功能。