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PYRCR通过抑制DRG2介导的心肌细胞焦亡减轻小鼠心肌缺血/再灌注损伤。

PYRCR alleviates myocardial ischemia/reperfusion injury in mice via inhibiting DRG2-mediated cardiomyocyte pyroptosis.

作者信息

Chen Xin-Zhe, Xu Hong-Fei, Zhao Xue-Mei, Li Fu-Hai, Ren Jia-Hao, Zhou Lu-Yu, Liu Cui-Yun, Wang Yu-Qin, Yang Su-Min, Liu Fang, Zhang Yu-Hui, Wang Kun, Gao Xiang-Qian

机构信息

Department of Pathology, Binzhou Medical University Hospital, Binzhou, 256603, China.

Department of Cardiovascular Surgery, Institute of Chronic Diseases, The Affiliated Hospital of Qingdao University, Qingdao, 266021, China.

出版信息

Acta Pharmacol Sin. 2025 Jun 30. doi: 10.1038/s41401-025-01604-9.

Abstract

Circular RNAs (circRNAs) are a distinct class of endogenous RNAs characterized by their covalently closed circular structure. CircRNAs play crucial regulatory roles in various biological processes and pathogenesis. In this study we investigated the role of circRNAs in cardiomyocyte pyroptosis and underlying mechanisms. Ischemia/reperfusion (I/R)-induced myocardial injury was induced in mice by ligation of the left anterior descending coronary artery (LAD). Neonatal mouse cardiomyocytes were subjected to hypoxia/reoxygenation (H/R) assault. By using circRNA microarray, we found that the expression levels of a pyroptosis-related circRNA (designated PYRCR) were markedly decreased in H/R-exposed cardiomyocytes and I/R-injured mouse hearts. Overexpression of PYRCR inhibited cardiomyocyte pyroptosis, attenuated I/R-induced myocardial infarction and ameliorated cardiac function in mice. By RNA pull-down assays coupled with MS analysis followed by molecular validation, we identified developmental regulated GTP-binding protein 2 (DRG2) as the direct downstream target of PYRCR. Cardiac-specific DRG2 knockout mice displayed attenuated pyroptosis and enhanced cardiac function following I/R injury compared to DRG2 controls. DRG2 directly bound to dynamin-related protein 1 (Drp1), the master regulator of mitochondrial fission, and enhanced its protein stability and expression. Importantly, PYRCR competitively disrupted the DRG2-Drp1 interaction, thereby suppressing DRG2-mediated Drp1 expression and subsequently reducing mitochondrial fission, cardiomyocyte pyroptosis, and myocardial damage. In conclusion, we demonstrate that PYRCR, a novel pyroptosis-related circRNA, protects against I/R-induced myocardial injury through the DRG2-mediated modulation of Drp1 activity, offering promising new therapeutic strategies for preventing cardiac damage mediated by cardiomyocyte pyroptosis.

摘要

环状RNA(circRNAs)是一类独特的内源性RNA,其特征在于具有共价闭合的环状结构。circRNAs在各种生物学过程和发病机制中发挥着关键的调节作用。在本研究中,我们调查了circRNAs在心肌细胞焦亡中的作用及其潜在机制。通过结扎左冠状动脉前降支(LAD)在小鼠中诱导缺血/再灌注(I/R)诱导的心肌损伤。将新生小鼠心肌细胞置于缺氧/复氧(H/R)攻击下。通过使用circRNA微阵列,我们发现焦亡相关circRNA(命名为PYRCR)在暴露于H/R的心肌细胞和I/R损伤的小鼠心脏中的表达水平显著降低。PYRCR的过表达抑制心肌细胞焦亡,减轻I/R诱导的心肌梗死,并改善小鼠的心功能。通过RNA下拉试验结合质谱分析,随后进行分子验证,我们确定发育调节型GTP结合蛋白2(DRG2)为PYRCR的直接下游靶点。与DRG2对照相比,心脏特异性DRG2基因敲除小鼠在I/R损伤后焦亡减轻,心功能增强。DRG2直接与动力相关蛋白1(Drp1)结合,Drp1是线粒体分裂的主要调节因子,并增强其蛋白质稳定性和表达。重要的是,PYRCR竞争性地破坏DRG2-Drp1相互作用,从而抑制DRG2介导的Drp1表达,随后减少线粒体分裂、心肌细胞焦亡和心肌损伤。总之,我们证明PYRCR是一种新型的焦亡相关circRNA,通过DRG2介导的Drp1活性调节来保护心脏免受I/R诱导的心肌损伤,为预防心肌细胞焦亡介导的心脏损伤提供了有前景的新治疗策略。

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