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首页> 外文期刊>Circulation research: a journal of the American Heart Association >Cardioprotection of ischemia/reperfusion injury by cholesterol-dependent MG53-mediated membrane repair.
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Cardioprotection of ischemia/reperfusion injury by cholesterol-dependent MG53-mediated membrane repair.

机译:胆固醇依赖性MG53介导的膜修复对缺血/再灌注损伤的心脏保护作用。

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RATIONALE: Unrepaired cardiomyocyte membrane injury causes irreplaceable cell loss, leading to myocardial fibrosis and eventually heart failure. However, the cellular and molecular mechanisms of cardiac membrane repair are largely unknown. MG53, a newly identified striated muscle-specific protein, is involved in skeletal muscle membrane repair. But the role of MG53 in the heart has not been determined. OBJECTIVE: We sought to investigate whether MG53 mediates membrane repair in cardiomyocytes and, if so, the cellular and molecular mechanism underlying MG53-mediated membrane repair in cardiomyocytes. Moreover, we determined possible cardioprotective effect of MG53-mediated membrane repair. METHODS AND RESULTS: We demonstrated that MG53 is crucial to the emergency membrane repair response in cardiomyocytes and protects the heart from stress-induced loss of cardiomyocytes. Disruption of the sarcolemmal membrane by mechanical, electric, chemical, or metabolic insults caused rapid and robust translocation of MG53 toward the injury sites. Ablation of MG53 prevented sarcolemmal resealing after infrared laser-induced membrane damage in intact heart, and exacerbated mitochondrial dysfunction and loss of cardiomyocytes during ischemia/reperfusion injury. Unexpectedly, the MG53-mediated cardiac membrane repair was mediated by a cholesterol-dependent mechanism: depletion of membrane cholesterol abolished, and its recovery restored injury-induced membrane translocation of MG53. The redox status of MG53 did not affect initiation of MG53 translocation, whereas MG53 oxidation conferred stability to the membrane repair patch. CONCLUSIONS: Thus, cholesterol-dependent MG53-mediated membrane repair is a vital, heretofore unappreciated cardioprotective mechanism against a multitude of insults and may bear important therapeutic implications.
机译:理由:未修复的心肌细胞膜损伤会导致不可替代的细胞损失,从而导致心肌纤维化并最终导致心力衰竭。但是,心脏膜修复的细胞和分子机制在很大程度上是未知的。 MG53是一种新发现的横纹肌特异蛋白,参与骨骼肌膜的修复。但是尚未确定MG53在心脏中的作用。目的:我们试图研究MG53是否介导心肌细胞的膜修复,如果是的话,还探讨了MG53介导的心肌细胞膜修复的细胞和分子机制。此外,我们确定了MG53介导的膜修复的可能的心脏保护作用。方法和结果:我们证明了MG53对于心肌细胞的紧急膜修复反应至关重要,并能保护心脏免受应激诱导的心肌细胞丢失。机械的,电的,化学的或新陈代谢的损伤破坏了肌膜,导致MG53快速而稳固地向损伤部位转移。 MG53的消融可防止红外激光诱导的完整心脏膜受损后的肌膜重新密封,并加剧缺血/再灌注损伤期间的线粒体功能障碍和心肌细胞丢失。出乎意料的是,MG53介导的心脏膜修复是由胆固醇依赖性机制介导的:膜胆固醇的消耗被消除,并且其恢复恢复了损伤诱导的MG53膜移位。 MG53的氧化还原状态不影响MG53易位的启动,而MG53的氧化赋予膜修复膜片以稳定性。结论:因此,胆固醇依赖性的MG53介导的膜修复是针对多种损伤的至关重要的,至今未得到认识的心脏保护机制,可能具有重要的治疗意义。

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