SR-A3 suppresses AKT activation to protect against MAFLD by inhibiting XIAP-mediated PTEN degradation.

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Tác giả: Gonglie Chen, Jingxuan Chen, Jinxuan Chen, Yang Ding, Xiaoguang Dou, Jiabao Guo, Xin Guo, Yufei Han, Wei Huang, Pingping Lai, Sin Man Lam, Yanwei Li, Yiran Liu, Si Mei, Guolin Miao, Guanghou Shui, Yuhui Wang, Shengmei Wen, Xunde Xian, Luzheng Xu, Yitong Xu, Chong Zhang, Lianxin Zhang, Wenxi Zhang, Dongyu Zhao, Yinqi Zhao, Zihao Zhou

Ngôn ngữ: eng

Ký hiệu phân loại: 978.02 1800–1899

Thông tin xuất bản: England : Nature communications , 2025

Mô tả vật lý:

Bộ sưu tập: NCBI

ID: 696348

 Scavenger receptor class A member 3 (SR-A3) is implicated in metabolic diseases
  however, the relationship between SR-A3 and metabolic dysfunction-associated fatty liver disease (MAFLD) has not been documented. Here, we show that hepatic SR-A3 expression is significantly reduced in human and animal models in the context of MAFLD. Genetic inhibition of SR-A3 in hamsters elicits hyperlipidemia, hyperglycemia, insulin resistance, and hepatic steatosis under chow-diet condition, yet escalates in diet-induced MAFLD. Mechanistically, SR-A3 ablation enhances E3 ligase XIAP-mediated proteasomal ubiquitination of PTEN, leading to AKT hyperactivation. By contrast, hepatic overexpression of human SR-A3 is sufficient to attenuate metabolic disorders in WT hamsters fed a high-fat-high-cholesterol diet and ob/ob mice via suppressing the XIAP/PTEN/AKT axis. In parallel, pharmacological intervention by PTEN agonist oroxin B or lipid lowering agent ezetimibe differentially corrects MAFLD in hamsters.
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