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首页> 外文期刊>Journal of cellular and molecular medicine. >MCU Up‐regulation contributes to myocardial ischemia‐reperfusion Injury through calpain/OPA‐1–mediated mitochondrial fusion/mitophagy Inhibition
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MCU Up‐regulation contributes to myocardial ischemia‐reperfusion Injury through calpain/OPA‐1–mediated mitochondrial fusion/mitophagy Inhibition

机译:MCU上调通过CALPAIN / OPA-1介导的线粒体融合/ MITOPHAGY抑制有助于心肌缺血再灌注损伤

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Mitochondrial dynamic disorder is involved in myocardial ischemia/reperfusion (I/R) injury. To explore the effect of mitochondrial calcium uniporter (MCU) on mitochondrial dynamic imbalance under I/R and its related signal pathways, a mouse myocardial I/R model and hypoxia/reoxygenation model of mouse cardiomyocytes were established. The expression of MCU during I/R increased and related to myocardial injury, enhancement of mitochondrial fission, inhibition of mitochondrial fusion and mitophagy. Suppressing MCU functions by Ru360 during I/R could reduce myocardial infarction area and cardiomyocyte apoptosis, alleviate mitochondrial fission and restore mitochondrial fusion and mitophagy. However, spermine administration, which could enhance MCU function, deteriorated the above‐mentioned myocardial cell injury and mitochondrial dynamic imbalanced. In addition, up‐regulation of MCU promoted the expression and activation of calpain‐1/2 and down‐regulated the expression of Optic atrophy type 1 (OPA1). Meantime, in transgenic mice (overexpression calpastatin, the endogenous inhibitor of calpain) I/R model and OPA1 knock‐down cultured cell. In I/R models of transgenic mice over‐expressing calpastatin, which is the endogenous inhibitor of calpain, and in H/R models with siOPA1 transfection, inhibition of calpains could enhance mitochondrial fusion and mitophagy, and inhibit excessive mitochondrion fission and apoptosis through OPA1. Therefore, we conclude that during I/R, MCU up‐regulation induces calpain activation, which down‐regulates OPA1, consequently leading to mitochondrial dynamic imbalance.
机译:线粒体动态障碍参与心肌缺血/再灌注(I / R)损伤。为了探讨线粒体钙钙(MCU)对I / R及其相关信号途径下线粒体动态不平衡的影响,建立了小鼠心肌细胞的小鼠心肌I / R模型和缺氧/雷诺/再氧化模型。 I / R期间MCU的表达增加,与心肌损伤,提高线粒体裂变,抑制线粒体融合和乳化物的表达。在I / R期间抑制Ru360的MCU功能可以减少心肌梗塞区域和心肌细胞凋亡,缓解线粒体裂变和恢复线粒体融合和乳化物。然而,可以增强MCU功能的精牙酮导致上述心肌细胞损伤和线粒体动态不平衡。此外,MCU的上调促进了CALPAIN-1/2的表达和活化,下调了视神经萎缩1型(OPA1)的表达。同时,在转基因小鼠(过表达钙替肽,钙氏酱的内源性抑制剂)中,I / R模型和OPA1敲除培养细胞。在I / R模型的转基因小鼠过度表达钙钾素,其是CALPAIN的内源性抑制剂,在H / R模型中具有SIOPA1转染,CALPAINS的抑制可以增强线粒体融合和乳化物,并通过OPA1抑制过量的线粒体裂变和细胞凋亡。 。因此,我们得出结论,在I / R期间,MCU上调诱导Calpain激活,下调OPA1,从而导致线粒体动态不平衡。

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