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全球线粒体蛋白导入蛋白质组学揭示了翻译和易位机制的不同调节。

Global mitochondrial protein import proteomics reveal distinct regulation by translation and translocation machinery.

机构信息

Institute of Biochemistry II, Goethe University Frankfurt, Theodor-Stern-Kai 7, Haus 75, 60590 Frankfurt am Main, Germany.

Institute of Biochemistry II, Goethe University Frankfurt, Theodor-Stern-Kai 7, Haus 75, 60590 Frankfurt am Main, Germany; Frankfurt Cancer Institute, Frankfurt am Main, Germany; Cardio-Pulmonary Institute, Frankfurt am Main, Germany.

出版信息

Mol Cell. 2022 Jan 20;82(2):435-446.e7. doi: 10.1016/j.molcel.2021.11.004. Epub 2021 Nov 29.

Abstract

Most mitochondrial proteins are translated in the cytosol and imported into mitochondria. Mutations in the mitochondrial protein import machinery cause human pathologies. However, a lack of suitable tools to measure protein uptake across the mitochondrial proteome has prevented the identification of specific proteins affected by import perturbation. Here, we introduce mePROD, a pulsed-SILAC based proteomics approach that includes a booster signal to increase the sensitivity for mitochondrial proteins selectively, enabling global dynamic analysis of endogenous mitochondrial protein uptake in cells. We applied mePROD to determine protein uptake kinetics and examined how inhibitors of mitochondrial import machineries affect protein uptake. Monitoring changes in translation and uptake upon mitochondrial membrane depolarization revealed that protein uptake was extensively modulated by the import and translation machineries via activation of the integrated stress response. Strikingly, uptake changes were not uniform, with subsets of proteins being unaffected or decreased due to changes in translation or import capacity.

摘要

大多数线粒体蛋白在细胞质中翻译,并被导入线粒体。线粒体蛋白输入机制的突变会导致人类疾病。然而,缺乏合适的工具来测量整个线粒体蛋白质组的蛋白质摄取,这阻碍了对受输入干扰影响的特定蛋白质的鉴定。在这里,我们介绍了 mePROD,一种基于脉冲 SILAC 的蛋白质组学方法,其中包括一个增强信号,以选择性地增加线粒体蛋白的灵敏度,从而能够在细胞中对内源性线粒体蛋白摄取进行全局动态分析。我们应用 mePROD 来确定蛋白质摄取动力学,并研究线粒体输入机制抑制剂如何影响蛋白质摄取。监测线粒体膜去极化时翻译和摄取的变化表明,蛋白质摄取通过整合应激反应的激活,被输入和翻译机制广泛调节。引人注目的是,摄取的变化并不均匀,由于翻译或输入能力的变化,一些蛋白质不受影响或减少。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0869/8791276/78aaaccf4e52/fx1.jpg

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