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缺血性室性心律失常的新靶点——ITFG2

A New target of ischemic ventricular arrhythmias-ITFG2.

作者信息

Pan Qing-Ming, Bi Fang-Fang, Jing Ze-Hong, Cao Miao, Cui Chen, Liu Fu, Jin Li, Yi-Jie He, Tian Hua, Yu Tong, Yun Wu, Shan Hong-Li, Zhou Yu-Hong

机构信息

State Key Laboratory of Frigid Zone Cardiovascular Diseases (SKLFZCD), Harbin Medical University, Harbin, Heilongjiang, 150081, PR China; Department of Pharmacology (State-Province Key Laboratories of Biomedicine-Pharmaceutics of China, Key Laboratory of Cardiovascular Research, Ministry of Education), College of Pharmacy, Harbin Medical University, Harbin, Heilongjiang, 150081, PR China.

Department of Basic Medicine, Institute of Respiratory Diseases Xiamen Medical College, Xiamen Medical College, Xiamen, Fujian, 361023, PR China.

出版信息

Eur J Pharmacol. 2025 Mar 15;991:177301. doi: 10.1016/j.ejphar.2025.177301. Epub 2025 Jan 24.

Abstract

ITFG2 is an intracellular protein known to modulate the immune response of T-cells. Our previous investigation revealed that ITFG2 specifically targets ATP5b to regulate ATP energy metabolism and maintain mitochondrial function, thereby protecting the heart from ischemic injury. However, the role of ITFG2 in ischemic ventricular arrhythmias and its underlying mechanisms have not been previously reported. In this study, we found ITFG2 overexpression, induced by an adeno-associated virus serotype 9 vector, partially reduced the incidence of ischemic ventricular arrhythmias and shortened the duration of ventricular arrhythmias in mice after myocardial infarction. Conversely, shRNA-mediated knockdown of endogenous ITFG2 aggravated ischemic ventricular arrhythmias. ITFG2 overexpression also shortened the prolonged QRS complex and increased the epicardial conduction velocity in MI mice. Additionally, the hearts from ITFG2 overexpression mice exhibited a higher maximal upstroke velocity at phase 0 of transmembrane action potential compared to MI mice. Patch-clamp analyses demonstrated a 50% increase in the peak current of voltage-dependent Na channel by ITFG2 overexpression in isolated ventricular cardiomyocytes post MI. In cultured neonatal mouse cardiomyocytes under hypoxic conditions, ITFG2 up-regulated Nav1.5 protein expression by inhibiting its ubiquitination. Co-immunoprecipitation experiments showed that ITFG2 reduces the binding affinity between NEDD4-2 and Nav1.5, thereby inhibiting Nav1.5 ubiquitination. Taken together, our data highlight the critical role of ITFG2 in reducing susceptibility to ischemic ventricular arrhythmias by down-regulating Nav1.5 ubiquitination. These findings suggest that ITFG2 may serve as a novel target for treating ischemic ventricular arrhythmias.

摘要

ITFG2是一种已知可调节T细胞免疫反应的细胞内蛋白质。我们之前的研究表明,ITFG2特异性靶向ATP5b以调节ATP能量代谢并维持线粒体功能,从而保护心脏免受缺血性损伤。然而,ITFG2在缺血性室性心律失常中的作用及其潜在机制此前尚未见报道。在本研究中,我们发现由9型腺相关病毒载体诱导的ITFG2过表达可部分降低心肌梗死后小鼠缺血性室性心律失常的发生率,并缩短室性心律失常的持续时间。相反,shRNA介导的内源性ITFG2敲低加重了缺血性室性心律失常。ITFG2过表达还缩短了心肌梗死小鼠延长的QRS波群,并增加了心外膜传导速度。此外,与心肌梗死小鼠相比,ITFG2过表达小鼠的心脏在跨膜动作电位0期表现出更高的最大上升速度。膜片钳分析表明,ITFG2过表达使心肌梗死后分离的心室心肌细胞中电压依赖性钠通道的峰值电流增加了50%。在缺氧条件下培养的新生小鼠心肌细胞中,ITFG2通过抑制Nav1.5的泛素化上调其蛋白表达。免疫共沉淀实验表明,ITFG2降低了NEDD4-2与Nav1.5之间的结合亲和力,从而抑制Nav1.5的泛素化。综上所述,我们的数据突出了ITFG2通过下调Nav1.5泛素化在降低缺血性室性心律失常易感性中的关键作用。这些发现表明,ITFG2可能成为治疗缺血性室性心律失常的新靶点。

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