Mistargeted mitochondrial proteins activate a proteostatic response in the cytosol

细胞生物学 线粒体膜间隙 蛋白质稳态 线粒体 蛋白质靶向 生物 热休克蛋白A9 胞浆 线粒体生物发生 线粒体膜转运蛋白 DNAJA3公司 细胞室 生物发生 线粒体融合 外膜转位酶 转运蛋白 线粒体内膜 膜间隙 生物化学 膜蛋白 细胞 线粒体DNA 细菌外膜 基因 肽序列 大肠杆菌
作者
Lidia Wróbel,Ulrike Topf,Piotr Brągoszewski,Sebastian Wiese,Malgorzata E. Sztolsztener,Silke Oeljeklaus,Aksana Varabyova,Maciej Lirski,Piotr Chrościcki,Seweryn Mroczek,Elżbieta Januszewicz,Andrzej Dziembowski,Marta Koblowska,Bettina Warscheid,Agnieszka Chacińska
出处
期刊:Nature [Nature Portfolio]
卷期号:524 (7566): 485-488 被引量:377
标识
DOI:10.1038/nature14951
摘要

Most of the mitochondrial proteome originates from nuclear genes and is transported into the mitochondria after synthesis in the cytosol. Complex machineries which maintain the specificity of protein import and sorting include the TIM23 translocase responsible for the transfer of precursor proteins into the matrix, and the mitochondrial intermembrane space import and assembly (MIA) machinery required for the biogenesis of intermembrane space proteins. Dysfunction of mitochondrial protein sorting pathways results in diminishing specific substrate proteins, followed by systemic pathology of the organelle and organismal death. The cellular responses caused by accumulation of mitochondrial precursor proteins in the cytosol are mainly unknown. Here we present a comprehensive picture of the changes in the cellular transcriptome and proteome in response to a mitochondrial import defect and precursor over-accumulation stress. Pathways were identified that protect the cell against mitochondrial biogenesis defects by inhibiting protein synthesis and by activation of the proteasome, a major machine for cellular protein clearance. Proteasomal activity is modulated in proportion to the quantity of mislocalized mitochondrial precursor proteins in the cytosol. We propose that this type of unfolded protein response activated by mistargeting of proteins (UPRam) is beneficial for the cells. UPRam provides a means for buffering the consequences of physiological slowdown in mitochondrial protein import and for counteracting pathologies that are caused or contributed by mitochondrial dysfunction.
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