MFN2型
MFN1型
线粒体融合
生物
DNAJA3公司
线粒体
细胞生物学
线粒体DNA
线粒体分裂
氧化磷酸化
生物化学
基因
作者
Wen Yue,Ziheng Chen,Haiyang Liu,Chen Yan,Ming Chen,Du Feng,Chaojun Yan,Hao Wu,Lei Du,Yueying Wang,Jinhua Liu,Xiaohu Huang,Laixin Xia,Lei Liu,Xiaohui Wang,Haijing Jin,Jun Wang,Zhiyin Song,Xiaojiang Hao,Quan Chen
出处
期刊:Cell Research
[Springer Nature]
日期:2014-02-11
卷期号:24 (4): 482-496
被引量:163
摘要
Mitochondrial fusion is a highly coordinated process that mixes and unifies the mitochondrial compartment for normal mitochondrial functions and mitochondrial DNA inheritance. Dysregulated mitochondrial fusion causes mitochondrial fragmentation, abnormal mitochondrial physiology and inheritance, and has been causally linked with a number of neuronal diseases. Here, we identified a diterpenoid derivative 15-oxospiramilactone (S3) that potently induced mitochondrial fusion to restore the mitochondrial network and oxidative respiration in cells that are deficient in either Mfn1 or Mfn2. A mitochondria-localized deubiquitinase USP30 is a target of S3. The inhibition of USP30 by S3 leads to an increase of non-degradative ubiquitination of Mfn1/2, which enhances Mfn1 and Mfn2 activity and promotes mitochondrial fusion. Thus, through the use of an inhibitor of USP30, our study uncovers an unconventional function of non-degradative ubiquitination of Mfns in promoting mitochondrial fusion.
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