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i-AAA 蛋白酶 YME1L 调控线粒体的可塑性。

Regulation of mitochondrial plasticity by the i-AAA protease YME1L.

机构信息

Max Planck Institute for Biology of Ageing, Joseph-Stelzmann-Str. 9b, D-50931 Cologne, Germany.

Cologne Excellence Cluster on Cellular Stress Responses in Aging-Associated Diseases (CECAD), University of Cologne, D-50931 Cologne, Germany.

出版信息

Biol Chem. 2020 May 26;401(6-7):877-890. doi: 10.1515/hsz-2020-0120.

Abstract

Mitochondria are multifaceted metabolic organelles and adapt dynamically to various developmental transitions and environmental challenges. The metabolic flexibility of mitochondria is provided by alterations in the mitochondrial proteome and is tightly coupled to changes in the shape of mitochondria. Mitochondrial proteases are emerging as important posttranslational regulators of mitochondrial plasticity. The i-AAA protease YME1L, an ATP-dependent proteolytic complex in the mitochondrial inner membrane, coordinates mitochondrial biogenesis and dynamics with the metabolic output of mitochondria. mTORC1-dependent lipid signaling drives proteolytic rewiring of mitochondria by YME1L. While the tissue-specific loss of YME1L in mice is associated with heart failure, disturbed eye development, and axonal degeneration in the spinal cord, YME1L activity supports growth of pancreatic ductal adenocarcinoma cells. YME1L thus represents a key regulatory protease determining mitochondrial plasticity and metabolic reprogramming and is emerging as a promising therapeutic target.

摘要

线粒体是多功能代谢细胞器,能够动态适应各种发育转变和环境挑战。线粒体的代谢灵活性是通过线粒体蛋白质组的改变提供的,并且与线粒体形状的变化紧密耦合。线粒体蛋白酶作为线粒体可塑性的重要翻译后调节因子正在出现。I-AAA 蛋白酶 YME1L 是线粒体内膜中的一种 ATP 依赖性蛋白水解复合物,它协调线粒体生物发生和动力学与线粒体的代谢输出。mTORC1 依赖性脂质信号通过 YME1L 驱动线粒体的蛋白水解重布线。虽然在小鼠中组织特异性缺失 YME1L 与心力衰竭、眼睛发育障碍和脊髓轴突变性有关,但 YME1L 活性支持胰腺导管腺癌细胞的生长。因此,YME1L 代表了决定线粒体可塑性和代谢重编程的关键调节蛋白酶,并且正在成为有前途的治疗靶标。

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