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Parkin Regulates Programmed Necrosis and Myocardial Ischemia/Reperfusion Injury by Targeting Cyclophilin-D

机译:Parkin通过靶向Cyclophilin-D调节程序的坏死和心肌缺血/再灌注损伤

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Aims: Cardiomyocyte death critically contributes to the pathogenesis of cardiac disorders, such as myocardial infarction, heart failure, and cardiac ischemia/reperfusion (I/R) injury. As one of the main forms of cardiac cell death, necrosis plays a critical role in heart diseases. Multiple signaling pathways of necrosis have been demonstrated, in which death receptors, receptor-interacting serine/threonine-protein 1 and 3 kinases, and cyclophilin-D (CypD) have been deeply implicated. However, the fundamental mechanism underlying myocardial necroptosis, especially the mitochondrial permeability transition pore (mPTP)-CypD-dependent death pathway, is poorly understood. Parkin functions as an E3 ubiquitin protein ligase that mainly mediates mitophagy cascades. As yet, it is not clear whether Parkin participates in regulating necrosis and myocardial I/R injury.Results: Here, our results showed that Parkin mediated mitophagy and inhibited necrosis under oxidative stress. In further exploring the underlying mechanisms, we found that Parkin suppressed mPTP opening by catalyzing the ubiquitination of CypD in necrotic cascades, which were not involved in Parkin-regulated mitophagy. Parkin inhibited necrosis, reduced myocardial I/R injury, and improved cardiac function.Innovation: Our present work reveals a highlighted connection between the mitochondrial matrix-localized Parkin and the mPTP-CypD-dependent necrotic signaling pathway in cardiac injury.Conclusion: Our results revealed a novel myocardial necrotic regulating model composed of Parkin, CypD, and mPTP, which may provide potential therapeutic targets and strategies to modulate the levels of these molecules.
机译:目的:心肌细胞死亡批判性导致心脏病的发病机制,如心肌梗死,心力衰竭和心脏缺血/再灌注(I / R)损伤。作为心脏细胞死亡的主要形式之一,坏死在心脏病中起着重要作用。已经证明了一种坏死的多种信号通路,其中死亡受体,受体相互作用丝氨酸/苏氨酸蛋白1和3激酶和细胞环菌素-D(CYPD)已经深入地意味着。然而,心肌坏死的基本机制,尤其是线粒体渗透率过渡孔(MPTP)依赖性死亡途径,理解得很差。 Parkin用作E3泛素蛋白质连接酶,主要介导肠级级联。目前尚不清楚Parkin是否参与调节坏死和心肌I / R损伤。结果:在这里,我们的结果表明,Parkin介导的氧化胁迫下的细菌肿瘤并抑制坏死。在进一步探索潜在的机制中,我们发现Parkin通过催化CYPD在坏死肠果中的泛素抑制MPTP开放,这些级联在没有参与Parkin-Court的MINOCHAGY中。 Parkin抑制坏死,减少心肌I / R损伤,并改善了心脏功能。透露我们的目前的作品揭示了心脏损伤中的线粒体基质局部化Parkin和MPTP-Cypd依赖性坏死信号传导途径的突出显示。结论:我们的结果揭示了由Parkin,Cypd和MPTP组成的新型心肌坏死调节模型,可以提供调节这些分子水平的潜在治疗目标和策略。

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