Kindlin-2/Otub1/Slc7a11 Axis Improved Cardiac Ischemia Reperfusion Injury by Inhibiting Cardiomyocyte Ferroptosis

内生 缺血 GPX4 再灌注损伤 心肌缺血 谷胱甘肽 心肌病 医学 心肌保护 心肌细胞 药理学 内科学 缺血性损伤 心脏病学 细胞生物学 治疗效果 心脏功能不全 心输出量 化学 心脏纤维化 下调和上调 癌症研究 信号转导
作者
Yuechao Dong,Fan Wu,Kuiwu Liu,Yufei Yue,Xinyu Shen,Zhezhe Qu,Shuting Yu,Weijie Du
出处
期刊:Antioxidants & Redox Signaling [Mary Ann Liebert, Inc.]
卷期号:43 (13-15): 727-744 被引量:1
标识
DOI:10.1177/15230864251386447
摘要

Aims: The study aimed to determine if the Kindlin-2/Otub1/Slc7a11 cascade could improve cardiac ischemia reperfusion injury by inhibiting ferroptosis. Results: The cardiac tissues of ischemia — reperfusion (I/R) mice, ischemic cardiomyopathy (ICM) patients, and cardiomyocytes underwent hypoxia/reoxygenation stimulation, and the Kindlin-2 levels decreased. Cardiomyocyte-specific Kindlin-2 overexpression alleviated I/R injury by inhibiting cardiomyocyte ferroptosis in vivo while cardiomyocyte-specific low expression of Kindlin-2 impaired cardiac functions, and this was accompanied by cardiomyocyte ferroptosis and reversed by Fer-1. In addition, in vitro experiments verified that Kindlin-2 prevented ferroptosis in cardiomyocytes treated with hypoxia/reoxygenation. An endogenous Kindlin-2 deficiency in cardiomyocytes was subsequently identified to spontaneously induce ferroptosis without exogenous stimulation, which is also prevented by Fer-1. Mechanistically, Kindlin-2 accelerated the interaction between Otub1 and Slc7a11. Consequently, deubiquitinated Slc7a11 contributed to the activation of glutathione (GSH) and Gpx4 to exert the anti-ferroptosis effect. Slc7a11/GSH/Gpx4 cascades strengthened by Kindlin-2 were abolished by Otub1 knock down. Moreover, Otub1 rescued cardiomyocyte ferroptosis and cardiac injury due to the Kindlin-2 deficiency. Innovation: Kindlin-2 accelerated the interaction between Otub1 and Slc7a11. Therefore, Slc7a11/GSH/GPX4 cascades were reinforced to improve the deteriorated tissues of I/R hearts by ameliorating ferroptosis. Conclusions: Our research revealed that the Kindlin-2/Otub1/Slc7a11 cascade improved cardiac I/R injury by inhibiting ferroptosis; hence, it may be a potential therapeutic target for ICM. Antioxid. Redox Signal. 43, 727–744.
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