SIRT1 deficiency promotes age-related heart failure through enhancing ferroptosis via GATA4-HADHA-GPX4 axis

GPX4 心力衰竭 心功能曲线 基因敲除 活性氧 下调和上调 磷脂过氧化氢谷胱甘肽过氧化物酶 氧化应激 调节器 转录因子 医学 细胞生物学 内科学 内分泌学 衰老 线粒体 基因剔除小鼠 癌症研究 生物 谷胱甘肽过氧化物酶 谷胱甘肽 西妥因1 细胞凋亡 化学 缺氧(环境) 药理学 蛋白质亚单位 平衡 程序性细胞死亡 心肌保护 谷胱甘肽
作者
Yu Duan,Yingchun Luo,Xuejie Han,Hui Yu,Hanwen Liu,Yun Zhou,Yunlong Gao,Qian Xu,Ying Wei,Ruoxin Min,Yong Hong,Xuanrui Ji,Haibo Jia,Yue Li,Yun Zhang
出处
期刊:Cell Death and Disease [Springer Nature]
卷期号:17 (1) 被引量:3
标识
DOI:10.1038/s41419-026-08634-z
摘要

Aging is a major contributor to the escalating prevalence of heart failure (HF). Ferroptosis has been implicated in age-related disorders and cardiovascular diseases. The role of ferroptosis in age-related HF remains unclear. Here, we show that aged rats exhibit impaired cardiac function accompanied by hallmark features of ferroptosis, including reduced glutathione peroxidase 4 (GPX4) expression and excessive lipid peroxidation. Consistently, cardiomyocyte-specific GPX4 knockout mice develop exacerbated cardiac ferroptosis and pronounced cardiac dysfunction. Iron overload further aggravates ferroptotic injury and cardiac dysfunction in aged rats, whereas pharmacological inhibition of ferroptosis markedly alleviates these effects. Conversely, cardiomyocyte-specific overexpression of GPX4 via rAAV9 attenuates ferroptosis and preserves cardiac function in D-galactose-induced aging mice. Proteomic analysis identifies hydroxyacyl-CoA dehydrogenase subunit A (HADHA) as a key protein markedly downregulated in aging hearts, particularly under iron overload. Mechanistically, HADHA deficiency induces mitochondrial dysfunction and excessive reactive oxygen species production, leading to glutathione depletion, GPX4 suppression, and subsequent ferroptosis. Accordingly, cardiomyocyte-specific knockdown of HADHA in young mice recapitulates ferroptosis-associated cardiac remodeling, which is reversed by ferrostatin-1 treatment. Furthermore, we identify SIRT1 (sirtuin 1) as an upstream regulator of HADHA during cardiac aging. Reduced SIRT1 expression in aging hearts suppresses HADHA transcription through inhibition of GATA4. Importantly, both cardiomyocyte-specific SIRT1 overexpression via rAAV9 in D-galactose-induced aging mice and pharmacological SIRT1 activation by resveratrol in aging rats restore HADHA expression, suppress ferroptosis, and protect against HF. Collectively, these findings establish ferroptosis as a critical contributor to age-related HF and identify the SIRT1-GATA4-HADHA axis as a potential therapeutic target.
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