Chondrocyte fatty acid oxidation drives osteoarthritis via SOX9 degradation and epigenetic regulation

Z Zixuan Mei K Kamuran Yilamu W Weiyu Ni P Panyang Shen N Nan Pan (Hefei National Research Center for Physical Sciences at the Microscale) H Huasen Chen Y Yingfeng Su L Lei Guo (Quantitative Biomedical Research Center, Department of Health Science & Biostatistics, Peter O’Donnell Jr. School of Public Health, University of Texas Southwestern Medical Center, Dallas, TX, USA.) Q Qunan Sun Z Zhaomei Li D Dongdong Huang X Xiangqian Fang S Shunwu Fan H Haitao Zhang S Shuying Shen

Abstract

Abstract Osteoarthritis is the most prevalent age-related degenerative joint disease and is closely linked to obesity. However, the underlying mechanisms remain unclear. Here we show that altered lipid metabolism in chondrocytes, particularly enhanced fatty acid oxidation (FAO), contributes to osteoarthritis progression. Excessive FAO causes acetyl-CoA accumulation, thereby altering protein-acetylation profiles, where the core FAO enzyme HADHA is hyperacetylated and activated, reciprocally boosting FAO activity and exacerbating OA progression. Mechanistically, elevated FAO reduces AMPK activity, impairs SOX9 phosphorylation, and ultimately promotes its ubiquitination-mediated degradation. Additionally, acetyl-CoA orchestrates epigenetic modulation, affecting multiple cellular processes critical for osteoarthritis pathogenesis, including the transcriptional activation of MMP13 and ADAMTS7. Cartilage-targeted delivery of trimetazidine, an FAO inhibitor and AMPK activator, demonstrates superior efficacy in a mouse model of metabolism-associated post-traumatic osteoarthritis. These findings suggest that targeting chondrocyte-lipid metabolism may offer new therapeutic strategies for osteoarthritis.

Article Details

Volume / Issue Vol. 16, Issue 1
Published May 27, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (15)

Z

Zixuan Mei

K

Kamuran Yilamu

W

Weiyu Ni

P

Panyang Shen

N

Nan Pan

Hefei National Research Center for Physical Sciences at the Microscale

H

Huasen Chen

Y

Yingfeng Su

L

Lei Guo

Quantitative Biomedical Research Center, Department of Health Science & Biostatistics, Peter O’Donnell Jr. School of Public Health, University of Texas Southwestern Medical Center, Dallas, TX, USA.

Q

Qunan Sun

Z

Zhaomei Li

D

Dongdong Huang

X

Xiangqian Fang

S

Shunwu Fan

H

Haitao Zhang

S

Shuying Shen