细胞生物学
线粒体
亮氨酸
热休克蛋白A9
线粒体载体
蛋白质降解
泛素连接酶
线粒体内膜
细菌外膜
蛋白质周转
蛋白质组
蛋白酶体
ATP-ADP转位酶
泛素
氨基酸
生物化学
生物
DNAJA3公司
分解代谢
线粒体融合
膜蛋白
转运蛋白
F盒蛋白
秀丽隐杆线虫
代谢途径
内质网相关蛋白降解
线粒体膜转运蛋白
蛋白质生物合成
作者
Qiaochu Li,Konstantin Weiss,Fujiko NIWA,Jan Riemer,Thorsten Hoppe
标识
DOI:10.1038/s41556-025-01799-3
摘要
The mitochondrial proteome is remodelled to meet metabolic demands, but how metabolic cues regulate mitochondrial protein turnover remains unclear. Here we identify a conserved, nutrient-responsive mechanism in which the amino acid leucine suppresses ubiquitin-dependent degradation of outer mitochondrial membrane (OMM) proteins, stabilizing key components of the protein import machinery and expanding the mitochondrial proteome to enhance metabolic respiration. Leucine inhibits the amino acid sensor GCN2, which selectively reduces the E3 ubiquitin ligase cofactor SEL1L at mitochondria. Depletion of SEL1L phenocopies the effect of leucine, elevating OMM protein abundance and mitochondrial respiration. Disease-associated defects in leucine catabolism and OMM protein turnover impair fertility in Caenorhabditis elegans and render human lung cancer cells resistant to inhibition of mitochondrial protein import. These findings define a leucine-GCN2-SEL1L axis that links nutrient sensing to mitochondrial proteostasis, with implications for metabolic disorders and cancer.
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