线粒体
乙酰化
裂变
细胞生物学
DNAJA3公司
融合蛋白
融合
生物
生物化学
线粒体融合
化学
线粒体分裂
能量代谢
线粒体DNA
物理
基因
中子
内分泌学
量子力学
哲学
语言学
重组DNA
作者
Huihui Gu,Kun Yang,Qiong Wu,Zhentong Shen,Xinjian Li,Chao Sun
摘要
Cells adjust mitochondrial morphologies to coordinate between the cellular demand for energy and the availability of resources. Mitochondrial morphology is regulated by the balance between two counteracting mitochondrial processes of fusion and fission. Fission and fusion are dynamic and reversible processes that depend on the coordination of a number of proteins and are primarily regulated by posttranslational modifications. In the mitochondria, more than 20% of proteins are acetylated in proteomic surveys, partly involved in the dynamic regulation of mitochondrial fusion and fission. This article focuses on the molecular mechanism of the mitochondrial dynamics of fusion and fission, and summarizes the related mechanisms and targets of mitochondrial protein acetylation to regulate the mitochondrial dynamics of fusion and fission in energy metabolism.
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