肺纤维化
特发性肺纤维化
肺
分解代谢
成纤维细胞
纤维化
内分泌学
表观遗传学
内科学
医学
新陈代谢
生物
癌症研究
氨基酸
代谢亢进
蛋白质周转
呼吸道疾病
蛋白质分解代谢
作者
Jie Yao,Su Fang,Miao Lei,Zexian Ou,Chuanfei Zeng,Wanli Peng,Na He,Lian Yang,Bingpeng Guo,Mingmeng Fang,Cuihua Wang,Jie Lv,Shuang Wu,Wei Kevin Zhang,Huimin Huang,Yang Peng,Wei Rao,Zhili Rong,Penghui Yang,Chaoqun Wang
标识
DOI:10.1038/s41467-026-72273-3
摘要
Idiopathic pulmonary fibrosis is a progressive and fatal disorder characterized by abnormal activation of alveolar fibroblasts. However, the metabolic reprogramming of alveolar fibroblasts during lung injury remains unclear. Here we show that uptake of branched-chain amino acids is increased, whereas their catabolism is significantly impaired in fibrotic lung fibroblasts and mouse lung tissues. Branched-chain amino acids promote lung fibroblast activation and bleomycin-induced lung fibrosis. Genetic inactivation of branched-chain amino acid transaminase 2 exacerbates fibrosis, whereas inhibition of the corresponding transporter SLC7A5 or enhancement of catabolism attenuates pulmonary fibrosis in male mice. Mechanistically, ATF4 and PPARγ regulate the expression of SLC7A5 and BCAA catabolic genes, respectively. We identify KDM4A as a key mediator of the epigenetic regulation of fibrotic genes. Notably, dysregulated BCAA metabolism is associated with disease severity in patients, suggesting that targeting BCAA metabolism may serve as a promising therapeutic strategy for idiopathic pulmonary fibrosis. Idiopathic pulmonary fibrosis is a fatal lung disease driven by aberrant fibroblast activation, but the underlying metabolic changes remain unclear. Here, the authors show that dysregulated branched chain amino acid metabolism promotes lung fibrosis and can be therapeutically targeted.
科研通智能强力驱动
Strongly Powered by AbleSci AI