琥珀酰化
心脏纤维化
化学
纤维化
成纤维细胞
心力衰竭
心肌纤维化
细胞生物学
赖氨酸
舒张期
癌症研究
信号转导
药理学
调解人
肺纤维化
内科学
医学
生物化学
三四脯氨酸
基因敲除
作者
Ziwen Wang,Ziyuan Zhang,Zheng Ping,Shu Yang,Yaqi Li,Ting Jiang,Xin Zheng,Qi Zhang,Zhaochuan Liu,Xiaoli Zhang,Zhongyong Jiang,Li Deng,Haimei Sun,Bo Wu,Deshan Zhou,Xuebin Cao,Hanping Shi,Tingyi Sun
标识
DOI:10.1038/s42003-025-09337-5
摘要
mice, we establish that succinate signaling through SUCNR1/GPR91 promotes PKM2 succinylation and dimerization, creating a profibrotic network associated with aging-related diastolic dysfunction. Nuclear translocation of dimeric PKM2 enables fibroblast activation through HIF-1α binding, enhancing DNA-binding affinity and upregulating fibrogenic genes. Metformin treatment suppresses fibroblast activation by reducing succinate accumulation, revealing therapeutic potential for mitigating age-related cardiac fibrosis and diastolic dysfunction. Our findings identify metabolic dysregulation as a critical target and characterize a succinate-PKM2 signaling axis whose interruption may attenuate cardiac aging.
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