粒体自噬
品脱1
细胞生物学
SIRT3
线粒体
帕金
基因剔除小鼠
生物
化学
自噬
生物化学
医学
锡尔图因
基因
内科学
乙酰化
细胞凋亡
疾病
帕金森病
作者
Yaoge Deng,Mingzhuang Hou,Yubin Wu,Yang Liu,Xiaowei Xia,Chenqi Yu,Jianfeng Yu,Huilin Yang,Yijian Zhang,Xuesong Zhu
出处
期刊:Bone research
[Springer Nature]
日期:2025-03-14
卷期号:13 (1): 36-36
被引量:27
标识
DOI:10.1038/s41413-025-00413-4
摘要
Maintaining mitochondrial homeostasis is critical for preserving chondrocyte physiological conditions and increasing resistance against osteoarthritis (OA). However, the underlying mechanisms governing mitochondrial self-renewal and energy production remain elusive. In this study, we demonstrated mitochondrial damage and aberrant mitophagy in OA chondrocytes. Genetically overexpressing PTEN-induced putative kinase 1 (PINK1) protects against cartilage degeneration by removing defective mitochondria. PINK1 knockout aggravated cartilage damage due to impaired mitophagy. SIRT3 directly deacetylated PINK1 to promote mitophagy and cartilage anabolism. Specifically, PINK1 phosphorylated PKM2 at the Ser127 site, preserving its active tetrameric form. This inhibited nuclear translocation and the interaction with β-catenin, resulting in a metabolic shift and increased energy production. Finally, a double-knockout mouse model demonstrated the role of the SIRT3-PINK1-PKM2 axis in safeguarding the structural integrity of articular joints and improving motor functions. Overall, this study provides a novel insight into the regulation of mitochondrial renewal and metabolic switches in OA.
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