生物
肝损伤
线粒体
肝功能
平衡
药物代谢
线粒体融合
药理学
药品
内科学
细胞生物学
线粒体DNA
医学
生物化学
基因
作者
Hakjoo Lee,Tae Jin Lee,Chad A. Galloway,Wenbo Zhi,Wei Xiao,Karen L. de Mesy Bentley,Ashok Sharma,Yong Teng,Hiromi Sesaki,Yisang Yoon
标识
DOI:10.1038/s41467-023-42564-0
摘要
Abstract Mitochondria are critical for metabolic homeostasis of the liver, and their dysfunction is a major cause of liver diseases. Optic atrophy 1 (OPA1) is a mitochondrial fusion protein with a role in cristae shaping. Disruption of OPA1 causes mitochondrial dysfunction. However, the role of OPA1 in liver function is poorly understood. In this study, we delete OPA1 in the fully developed liver of male mice. Unexpectedly, OPA1 liver knockout (LKO) mice are healthy with unaffected mitochondrial respiration, despite disrupted cristae morphology. OPA1 LKO induces a stress response that establishes a new homeostatic state for sustained liver function. Our data show that OPA1 is required for proper complex V assembly and that OPA1 LKO protects the liver from drug toxicity. Mechanistically, OPA1 LKO decreases toxic drug metabolism and confers resistance to the mitochondrial permeability transition. This study demonstrates that OPA1 is dispensable in the liver, and that the mitohormesis induced by OPA1 LKO prevents liver injury and contributes to liver resiliency.
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