粒体自噬
生物发生
调节器
细胞生物学
线粒体生物发生
帕金
线粒体
自噬
主调节器
品脱1
生物
化学
线粒体融合
溶酶体
磷酸酶
焊剂(冶金)
胞浆
细胞器生物发生
DNAJA3公司
生物化学
表型
作者
Valentina Cianfanelli,Monica Nanni,Samantha Corrà,Sofia Mauri,David Sumpton,Sérgio Lilla,Rossella De Cegli,Matteo Bordi,Giacomo Milletti,Caterina Ferraina,Arnaldur Hall,Michele Petraroia,Valentina Clausi,Ezio Giorda,Marco Scarsella,Alessandra Barbiera,Giulia Cadeddu,Marco Colasanti,Tiziana Persichini,Kenji Maeda
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2025-10-03
卷期号:11 (40): eadw7376-eadw7376
被引量:2
标识
DOI:10.1126/sciadv.adw7376
摘要
Mitochondrial homeostasis relies on a tight balance between mitochondrial biogenesis and degradation. Although mitophagy is one of the main pathways involved in the clearance of damaged or old mitochondria, its coordination with mitochondrial biogenesis is poorly characterized. Here, by unbiased approaches including last-generation liquid chromatography coupled to mass spectrometry and transcriptomics, we identify the protein phosphatase PP2A-B55α/PPP2R2A as a Parkin-dependent regulator of mitochondrial number. Upon mitochondrial damage, PP2A-B55α determines the amplitude of mitophagy induction and execution by regulating both early and late mitophagy events. A few minutes after the insult, ULK1 is released from the inhibitory regulation of PP2A-B55α, whereas 2 to 4 hours later, PP2A-B55α promotes the nuclear translocation of TFEB, the master regulator of autophagy and lysosome genes, to support mitophagy execution. Moreover, PP2A-B55α controls a transcriptional program of mitochondrial biogenesis by stabilizing the Parkin substrate and PGC-1α inhibitor PARIS. PP2A-B55α targeting rescues neurodegenerative phenotypes in a fly model of Parkinson's disease, thus suggesting potential therapeutic application.
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