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通过蛋白质转运小分子抑制剂揭示的TIM22线粒体导入途径的底物特异性

Substrate specificity of the TIM22 mitochondrial import pathway revealed with small molecule inhibitor of protein translocation.

作者信息

Hasson Samuel A, Damoiseaux Robert, Glavin Jenny D, Dabir Deepa V, Walker Scott S, Koehler Carla M

机构信息

Department of Chemistry and Biochemistry, University of California, Los Angeles (UCLA), Los Angeles, California, USA.

出版信息

Proc Natl Acad Sci U S A. 2010 May 25;107(21):9578-83. doi: 10.1073/pnas.0914387107. Epub 2010 May 10.

Abstract

The TIM22 protein import pathway mediates the import of membrane proteins into the mitochondrial inner membrane and consists of two intermembrane space chaperone complexes, the Tim9-Tim10 and Tim8-Tim13 complexes. To facilitate mechanistic studies, we developed a chemical-genetic approach to identify small molecule agonists that caused lethality to a tim10-1 yeast mutant at the permissive temperature. One molecule, MitoBloCK-1, attenuated the import of the carrier proteins including the ADP/ATP and phosphate carriers, but not proteins that used the TIM23 or the Mia40/Erv1 translocation pathways. MitoBloCK-1 impeded binding of the Tim9-Tim10 complex to the substrate during an early stage of translocation, when the substrate was crossing the outer membrane. As a probe to determine the substrate specificity of the small Tim proteins, MitoBloCK-1 impaired the import of Tim22 and Tafazzin, but not Tim23, indicating that the Tim9-Tim10 complex mediates the import of a subset of inner membrane proteins. MitoBloCK-1 also inhibited growth of mammalian cells and import of the ADP/ATP carrier, but not TIM23 substrates, confirming that MitoBloCK-1 can be used to understand mammalian mitochondrial import and dysfunction linked to inherited human disease. Our approach of screening chemical libraries for compounds causing synthetic genetic lethality to identify inhibitors of mitochondrial protein translocation in yeast validates the generation of new probes to facilitate mechanistic studies in yeast and mammalian mitochondria.

摘要

TIM22蛋白导入途径介导膜蛋白导入线粒体内膜,由两个膜间隙伴侣复合物Tim9-Tim10和Tim8-Tim13复合物组成。为便于进行机制研究,我们开发了一种化学遗传学方法,以鉴定在允许温度下对tim10-1酵母突变体具有致死性的小分子激动剂。一种分子MitoBloCK-1减弱了包括ADP/ATP载体和磷酸盐载体在内的载体蛋白的导入,但不影响使用TIM23或Mia40/Erv1转运途径的蛋白。在转运的早期阶段,即底物穿过外膜时,MitoBloCK-1会阻碍Tim9-Tim10复合物与底物的结合。作为确定小Tim蛋白底物特异性的探针,MitoBloCK-1损害了Tim22和塔夫绸蛋白的导入,但不影响Tim23,这表明Tim9-Tim10复合物介导了一部分内膜蛋白的导入。MitoBloCK-1还抑制了哺乳动物细胞的生长以及ADP/ATP载体的导入,但不影响TIM23底物,这证实了MitoBloCK-1可用于了解与人类遗传疾病相关的哺乳动物线粒体导入和功能障碍。我们通过筛选化学文库寻找导致合成基因致死性的化合物来鉴定酵母中线粒体蛋白转运抑制剂的方法,验证了生成新探针以促进酵母和哺乳动物线粒体机制研究的可行性。

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