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脓毒症相关心肌损伤与 Mst1 的上调、线粒体功能障碍和 Drp1/F-actin 信号通路有关。

Sepsis-related myocardial injury is associated with Mst1 upregulation, mitochondrial dysfunction and the Drp1/F-actin signaling pathway.

机构信息

Department of Critical Care Medicine, Fujian Provincial Hospital, Fujian Provincial Center for Critical Care Medicine, Fujian Medical University, Fuzhou, 350001, Fujian, China.

Department of Geriatric Medicine, Fujian Provincial Hospital, Fujian Provincial Institute of Clinical Geriatrics, Fujian Key Laboratory of Geriatrics, Fujian Provincial Center for Geriatrics, Fujian Medical University, Fuzhou, 350001, Fujian, China.

出版信息

J Mol Histol. 2019 Apr;50(2):91-103. doi: 10.1007/s10735-018-09809-5. Epub 2019 Jan 2.

Abstract

LPS-induced septic cardiomyopathy has been found to be connected with mitochondrial stress through unknown mechanisms. Mitochondrial fission is an early event in mitochondrial dysfunction. The aim of our study was to determine the role and regulatory mechanism of mitochondrial fission in the progression of LPS-induced septic cardiomyopathy, with a particular focus on Mst1 and F-actin. Our data demonstrated that Mst1 expression was rapidly upregulated in LPS-treated hearts and that increased Mst1 promoted cardiomyocyte death by inducing mitochondrial stress. Mechanistically, elevated expression of Mst1 upregulated Drp1, and the latter initiated mitochondrial fission. Excessive mitochondrial fission caused mitochondrial oxidative injury, mitochondrial membrane potential reduction, mitochondrial proapoptotic element translocation into the cytoplasm/nucleus, mitochondrial energy dysfunction and mitochondrial apoptosis activation. Inhibition of mitochondrial fission sustained mitochondrial function and favored cardiomyocyte survival. Furthermore, we identified F-actin degradation as an apparent downstream event of mitochondrial fission activation in the context of LPS-induced septic cardiomyopathy. Stabilization of F-actin attenuated fission-mediated cardiomyocyte death. Altogether, our results define the Mst1/Drp1/mitochondrial fission/F-actin axis as a new signaling pathway that mediates LPS-related septic cardiomyopathy by inducing mitochondrial stress and cardiomyocyte death. Therefore, Mst1 expression, mitochondrial fission modification and F-actin stabilization may serve as potential therapeutic targets for sepsis-related myocardial injury.

摘要

脂多糖诱导的脓毒症性心肌病与线粒体应激有关,但具体机制尚不清楚。线粒体裂变是线粒体功能障碍的早期事件。本研究旨在确定线粒体裂变在脂多糖诱导的脓毒症性心肌病进展中的作用和调节机制,特别关注 Mst1 和 F-肌动蛋白。我们的数据表明,Mst1 在 LPS 处理的心脏中迅速上调,增加的 Mst1 通过诱导线粒体应激促进心肌细胞死亡。机制上,Mst1 的高表达上调了 Drp1,后者引发线粒体裂变。过度的线粒体裂变导致线粒体氧化损伤、线粒体膜电位降低、线粒体促凋亡因子向细胞质/核内易位、线粒体能量功能障碍和线粒体凋亡激活。抑制线粒体裂变维持了线粒体功能,有利于心肌细胞存活。此外,我们还发现,在脂多糖诱导的脓毒症性心肌病中,F-肌动蛋白降解是线粒体裂变激活的一个明显下游事件。F-肌动蛋白的稳定减轻了分裂介导的心肌细胞死亡。总之,我们的研究结果定义了 Mst1/Drp1/线粒体裂变/F-肌动蛋白轴作为一条新的信号通路,通过诱导线粒体应激和心肌细胞死亡来介导与 LPS 相关的脓毒症性心肌病。因此,Mst1 表达、线粒体裂变修饰和 F-肌动蛋白稳定可能成为与脓毒症相关心肌损伤的潜在治疗靶点。

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