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LONP1介导的线粒体质量控制保障心脏发育过程中的代谢转变。

LONP1-mediated mitochondrial quality control safeguards metabolic shifts in heart development.

作者信息

Zhao Ke, Huang Xinyi, Zhao Wukui, Lu Bin, Yang Zhongzhou

机构信息

State Key Laboratory of Pharmaceutical Biotechnology, MOE Key Laboratory of Model Animal for Disease Study, Model Animal Research Center, and Jiangsu Key Laboratory of Molecular Medicine, Nanjing University Medical School, Nanjing 210093, China.

Department of Biochemistry and Molecular Biology, School of Basic Medical Sciences, Hengyang Medical School, University of South China, Hengyang, Hunan 421001, China.

出版信息

Development. 2022 Mar 15;149(6). doi: 10.1242/dev.200458. Epub 2022 Mar 18.

Abstract

The mitochondrial matrix AAA+ Lon protease (LONP1) degrades misfolded or unassembled proteins, which play a pivotal role in mitochondrial quality control. During heart development, a metabolic shift from anaerobic glycolysis to mitochondrial oxidative phosphorylation takes place, which relies strongly on functional mitochondria. However, the relationship between the mitochondrial quality control machinery and metabolic shifts is elusive. Here, we interfered with mitochondrial quality control by inactivating Lonp1 in murine embryonic cardiac tissue, resulting in severely impaired heart development, leading to embryonic lethality. Mitochondrial swelling, cristae loss and abnormal protein aggregates were evident in the mitochondria of Lonp1-deficient cardiomyocytes. Accordingly, the p-eIF2α-ATF4 pathway was triggered, and nuclear translocation of ATF4 was observed. We further demonstrated that ATF4 regulates the expression of Tfam negatively while promoting that of Glut1, which was responsible for the disruption of the metabolic shift to oxidative phosphorylation. In addition, elevated levels of reactive oxygen species were observed in Lonp1-deficient cardiomyocytes. This study revealed that LONP1 safeguards metabolic shifts in the developing heart by controlling mitochondrial protein quality, suggesting that disrupted mitochondrial quality control may cause prenatal cardiomyopathy.

摘要

线粒体基质AAA+ Lon蛋白酶(LONP1)可降解错误折叠或未组装的蛋白质,这在线粒体质量控制中起关键作用。在心脏发育过程中,发生了从无氧糖酵解到线粒体氧化磷酸化的代谢转变,这强烈依赖于功能正常的线粒体。然而,线粒体质量控制机制与代谢转变之间的关系尚不清楚。在此,我们通过使小鼠胚胎心脏组织中的Lonp1失活来干扰线粒体质量控制,导致心脏发育严重受损,进而导致胚胎致死。在Lonp1缺陷型心肌细胞的线粒体中,线粒体肿胀、嵴丢失和异常蛋白质聚集体明显可见。相应地,p-eIF2α-ATF4通路被触发,并且观察到ATF4的核转位。我们进一步证明,ATF4负向调节Tfam的表达,同时促进Glut1的表达,这导致了向氧化磷酸化的代谢转变的破坏。此外,在Lonp1缺陷型心肌细胞中观察到活性氧水平升高。这项研究表明,LONP1通过控制线粒体蛋白质质量来保障发育中心脏的代谢转变,这表明线粒体质量控制的破坏可能导致产前心肌病。

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