基因敲除
心力衰竭
下调和上调
信使核糖核酸
线粒体
细胞生物学
化学
氧化磷酸化
内科学
翻译(生物学)
内分泌学
收缩(语法)
小RNA
氧化应激
心脏功能不全
刺激
医学
线粒体ROS
信号转导
活性氧
病态的
细胞凋亡
基因表达
细胞
癌症研究
生物
表型
心脏病学
药理学
作者
Junling Gao,Ting Lan,Xin Xu,Haipeng Guo,Siyu Wang,Ping zhang,Vitaly A. Polunovsky,Nahum Sonenberg,Peter B. Bitterman,Robert J. Bache,Xinli Hu,Zhongbing Lu,Yingjie Chen
出处
期刊:Redox biology
[Elsevier BV]
日期:2026-02-16
卷期号:91: 104089-104089
被引量:1
标识
DOI:10.1016/j.redox.2026.104089
摘要
Reduced SERCA2a expression impairs cardiomyocyte contraction and relaxation, contributing to the progression of congestive heart failure (CHF). The translation of specific mRNAs, including SERCA2a, is suppressed by 4E-binding proteins (4E-BPs) through preventing the assembly of an intact initiation complex. Here, we investigated the role of 4E-BPs in regulating cardiac SERCA2a expression and transverse aortic constriction (TAC)-induced CHF in mice via genetic deletion of both 4E-BP1 and 4E-BP2 (4E-BP1/2 DKO), as well as through cardiac-specific knockdown or overexpression of 4E-BP1. 4E-BP1/2 DKO markedly alleviated TAC-induced CHF and mortality without affecting left ventricular hypertrophy. RNA-seq and mitochondrial respiratory analyses showed that 4E-BP1/2 DKO mitigated TAC-induced mitochondrial dysfunction and oxidative stress. Similar protective effects were observed with 4E-BP1 knockdown, whereas 4E-BP1 overexpression worsened these pathological changes. Mechanistically, 4E-BP1/2 DKO increased SERCA2a mRNA binding to eIF4G, thereby enhancing SERCA2a protein translation in the myocardium. Cardiac-specific Serca2a knockdown in TAC-challenged 4E-BP1/2 DKO mice reversed these protective effects. Consistent findings were obtained in a cardiomyocyte cell line. In summary, our results demonstrated that 4E-BP1/2 DKO translationally increased myocardial SERCA2a expression and rescued mice from CHF development after TAC, indicating that interventions reducing the signaling of cardiac 4E-BPs may be a novel therapeutic approach for treating CHF.
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