Obesity-induced oleic acid metabolic dysregulation may exacerbate osteoarthritis through the degradation of SOX9
Haoke Li, Jiawei Fu, Juan Liu, Bokai Zhang, Chenhui Cai, Zaoqing Zhang, Tianying Ma, Xu Hu, Yang Zhang, Peifang Yan, Chengcheng Wang, Rui Zuo, Chao Zhang
Journal:CELLULAR AND MOLECULAR LIFE SCIENCES
IF:6.5
DOI:10.1007/s00018-026-06261-7
PMID:42171703
Published:2026-05-22
research field:分子生物学细胞信号传导风湿病学骨科代谢紊乱
Abstract
Obesity-related osteoarthritis (OA) is a degenerative joint disease accompanied by metabolic disorders. However, the specific metabolites and their molecular mechanisms remain unclear. Here, we establish a mouse model of obesity by feeding a high-fat diet (HFD) and find that HFD feeding promotes articular cartilage degeneration and accelerates OA progression. By using the untargeted metabolomics analysis, we identify oleic acid (OLA), a common monounsaturated fatty acid, as a significantly upregulated metabolite accumulating in articular cartilage. We further show that OLA disrupts extracellular matrix (ECM) homeostasis and promotes ubiquitin-mediated degradation of the key upstream transcription factor sex-determining region Y-type high-mobility group box protein 9 (SOX9) in murine chondrocytes and human cartilage explants. RNA-sequencing and further immunofluorescence staining reveal aberrant activation of Ca2 + /calmodulin-dependent protein kinase 2 (CaMK2) in the articular cartilage of obese mice. Furthermore, we find that the activation of CaMK2 is induced by OLA, leading to ubiquitin-mediated degradation of SOX9 and subsequent ECM disruption in chondrocytes. Notably, OLA-induced ECM disruption and SOX9 degradation are effectively reversed by a CaMK2 inhibitor. These findings suggest that an OLA-CaMK2-SOX9 molecular axis may be involved in the pathogenesis of obesity-related OA and that CaMK2 could be a potential therapeutic target.
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