秀丽隐杆线虫
生物
精氨酸
线粒体
分解代谢
细胞生物学
精氨酸酶
新陈代谢
胞浆
突变体
三磷酸腺苷
生物化学
基因
酶
氨基酸
作者
Ruofeng Tang,Xin Wang,Junxiang Zhou,Fengxia Zhang,Shan Zhao,Qiwen Gan,Liyuan Zhao,Fengyang Wang,Qian Zhang,Jie Zhang,Guodong Wang,Chonglin Yang
标识
DOI:10.1016/j.jgg.2020.02.007
摘要
Abstract Arginine catabolism involves enzyme-dependent reactions in both mitochondria and the cytosol, defects in which may lead to hyperargininemia, a devastating developmental disorder. It is largely unknown if defective arginine catabolism has any effects on mitochondria. Here we report that normal arginine catabolism is essential for mitochondrial homeostasis in Caenorhabditis elegans. Mutations of the arginase gene argn-1 lead to abnormal mitochondrial enlargement and reduced adenosine triphosphate (ATP) production in C. elegans hypodermal cells. ARGN-1 localizes to mitochondria and its loss causes arginine accumulation, which disrupts mitochondrial dynamics. Heterologous expression of human ARG1 or ARG2 rescued the mitochondrial defects of argn-1 mutants. Importantly, genetic inactivation of the mitochondrial basic amino acid transporter SLC-25A29 or the mitochondrial glutamate transporter SLC-25A18.1 fully suppressed the mitochondrial defects caused by argn-1 mutations. These findings suggest that mitochondrial damage probably contributes to the pathogenesis of hyperargininemia and provide clues for developing therapeutic treatments for hyperargininemia.
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