适应(眼睛)
降级(电信)
细胞生物学
压力(语言学)
蛋白质降解
化学
生物
计算机科学
神经科学
语言学
电信
哲学
作者
Lara Kroczek,Hendrik Nolte,Yvonne Lasarzewski,Thibaut Molinié,Daniel Pinero,Kathrin Lemke,Elena I. Rugarli,Thomas Langer
标识
DOI:10.1101/2025.03.04.641455
摘要
Mitochondria adapt to cellular stress to ensure cell survival. The stress-regulated mitochondrial peptidase OMA1 orchestrates these adaptive responses, which limit mitochondrial fusion and promote mitochondrial stress signaling and metabolic rewiring. Here, we show that cellular stress adaptation involves OMA1-mediated regulation of mitochondrial protein import and OXPHOS biogenesis. OMA1 cleaves the mitochondrial chaperone DNAJC15 and promotes its degradation by the m-AAA protease AFG3L2. Loss of DNAJC15 reduces the import of OXPHOS-related proteins via the TIMM23-TIMM17A protein translocase, limiting OXPHOS biogenesis under conditions of mitochondrial dysfunction. Non-imported mitochondrial preproteins accumulate at the endoplasmic reticulum and induce an ATF6-related unfolded protein response. Our results demonstrate stress-dependent changes in protein import specificity as part of the OMA1-mediated mitochondrial stress response and highlight the interdependence of proteostasis regulation between different organelles.
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