TRIM29-dependent AKR1B10 degradation ameliorates MASH
- Zhengcai Ma
- Juan Li
- Xiaoduo Li
- Jianyu Zhu
- Chunyong Sun
- Jinyin Zhang
- Zhipeng Yang
- Jifei Liu
- Yuan Zhou
- Zhenwei Gui
- Jingwei Li
- Hongmei Wang
- Dan Shi
- Qiang Song
- Xuegang Li
- Rongkun Tao
- Hang Ma
- Xiaoli Ye
2026-08-07
Metabolic dysfunction–associated steatohepatitis (MASH) is a prevalent and life-threatening liver disease with limited effective therapies, necessitating the urgent identification of previously unidentified molecular targets and effective pharmacologic agents. This study identifies aldo-keto reductase family 1 member B10 (AKR1B10) as the MASH hallmark, showing elevated expression in patient tissues and serum, correlating strongly with disease severity. Genetic ablation of Akr1b10 in mice significantly attenuated high-fat/high-cholesterol (HFHC) diet–induced steatosis, inflammation, and fibrosis. Mechanistically, we found that tripartite motif protein 29 (TRIM29) functions as an E3 ubiquitin ligase that directly binds AKR1B10, promoting its ubiquitination and proteasomal degradation, which ameliorates MASH progressions. Furthermore, the natural compound coptisine (COP) allosterically facilitated TRIM29-AKR1B10 interaction, accelerating AKR1B10 degradation and showing improved efficacy in MASH mice. Moreover, Trim29 overexpression enhances COP-mediated symptoms alleviation. Our findings delineate the TRIM29/AKR1B10 axis as a druggable signaling pathway and identify COP as a promising therapeutic candidate for MASH.