Department of Chemistry, Biochemistry and Pharmaceutical Sciences, University of Bern, Bern, Switzerland.
Signalling Research Centres BIOSS and CIBSS, University of Freiburg, Freiburg, Germany.
Life Sci Alliance. 2023 Aug 16;6(11). doi: 10.26508/lsa.202302004. Print 2023 Nov.
The AAA-ATPase Msp1 extracts mislocalised outer membrane proteins and thus contributes to mitochondrial proteostasis. Using pulldown experiments, we show that trypanosomal Msp1 localises to both glycosomes and the mitochondrial outer membrane, where it forms a complex with four outer membrane proteins. The trypanosome-specific pATOM36 mediates complex assembly of α-helically anchored mitochondrial outer membrane proteins such as protein translocase subunits. Inhibition of their assembly triggers a pathway that results in the proteasomal digestion of unassembled substrates. Using inducible single, double, and triple RNAi cell lines combined with proteomic analyses, we demonstrate that not only Msp1 but also the trypanosomal homolog of the AAA-ATPase VCP are implicated in this quality control pathway. Moreover, in the absence of VCP three out of the four Msp1-interacting mitochondrial proteins are required for efficient proteasomal digestion of pATOM36 substrates, suggesting they act in concert with Msp1. pATOM36 is a functional analog of the yeast mitochondrial import complex complex and possibly of human mitochondrial animal-specific carrier homolog 2, suggesting that similar mitochondrial quality control pathways linked to Msp1 might also exist in yeast and humans.
AAA-ATPase Msp1 可提取定位错误的外膜蛋白,从而有助于线粒体蛋白稳态。通过下拉实验,我们发现锥虫 Msp1 定位于糖酵解体和线粒体的外膜,在那里它与四种外膜蛋白形成复合物。锥虫特异性的 pATOM36 介导 α-螺旋锚定的线粒体外膜蛋白(如蛋白转运酶亚基)的复合物组装。它们的组装抑制触发了导致未组装底物被蛋白酶体消化的途径。使用诱导型单、双和三 RNAi 细胞系结合蛋白质组学分析,我们证明不仅 Msp1,而且 AAA-ATPase VCP 的锥虫同源物也参与了这种质量控制途径。此外,在没有 VCP 的情况下,Msp1 相互作用的四种线粒体蛋白中的三种对于 pATOM36 底物的有效蛋白酶体消化是必需的,这表明它们与 Msp1 协同作用。pATOM36 是酵母线粒体导入复合物的功能类似物,可能也是人类线粒体动物特异性载体同源物 2 的功能类似物,这表明与 Msp1 相关的类似线粒体质量控制途径可能也存在于酵母和人类中。