生物
克里斯塔
品脱1
细胞生物学
线粒体
神经退行性变
磷酸化
粒体自噬
遗传学
自噬
医学
病理
细胞凋亡
疾病
作者
Pei‐I Tsai,Chin‐Hsien Lin,Chung-Han Hsieh,Amanda M. Papakyrikos,Min Joo Kim,Valerio Napolioni,Carmen Schoor,Julien Couthouis,Ruey‐Meei Wu,Zbigniew K. Wszołek,Dominic Winter,Michael D. Greicius,Owen A. Ross,Xinnan Wang
出处
期刊:Molecular Cell
[Elsevier]
日期:2018-03-01
卷期号:69 (5): 744-756.e6
被引量:94
标识
DOI:10.1016/j.molcel.2018.01.026
摘要
Mitochondrial crista structure partitions vital cellular reactions and is precisely regulated by diverse cellular signals. Here, we show that, in Drosophila, mitochondrial cristae undergo dynamic remodeling among distinct subcellular regions and the Parkinson’s disease (PD)-linked Ser/Thr kinase PINK1 participates in their regulation. Mitochondria increase crista junctions and numbers in selective subcellular areas, and this remodeling requires PINK1 to phosphorylate the inner mitochondrial membrane protein MIC60/mitofilin, which stabilizes MIC60 oligomerization. Expression of MIC60 restores crista structure and ATP levels of PINK1-null flies and remarkably rescues their behavioral defects and dopaminergic neurodegeneration. In an extension to human relevance, we discover that the PINK1-MIC60 pathway is conserved in human neurons, and expression of several MIC60 coding variants in the mitochondrial targeting sequence found in PD patients in Drosophila impairs crista junction formation and causes locomotion deficits. These findings highlight the importance of maintenance and plasticity of crista junctions to cellular homeostasis in vivo.
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