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ATP synthase subunit alpha and LV mass in ischaemic human hearts

机译:缺血性人类心脏中的ATP合酶亚基α和LV质量

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AbstractMitochondrial dysfunction plays a critical role in the development of ischaemic cardiomyopathy (ICM). In this study, the mitochondrial proteome in the cardiac tissue of ICM patients was analysed by quantitative differential electrophoresis (2D-DIGE) and mass spectrometry (MS) for the first time to provide new insights into cardiac dysfunction in this cardiomyopathy. We isolated mitochondria from LV samples of explanted hearts of ICM patients (n = 8) and control donors (n = 8) and used a proteomic approach to investigate the variations in mitochondrial protein expression. We found that most of the altered proteins were involved in cardiac energy metabolism (82%). We focused on ATPA, which is involved in energy production, and dihydrolipoyl dehydrogenase, implicated in substrate utilization, and observed that these molecules were overexpressed and that the changes detected in the processes mediated by these proteins were closely related. Notably, we found that ATPA overexpression was associated with reduction in LV mass (r = −0.74, P  0.01). We also found a substantial increase in the expression of elongation factor Tu, a molecule implicated in protein synthesis, and PRDX3, involved in the stress response. All of these changes were validated using classical techniques and by using novel and precise selected reaction monitoring analysis and an RNA sequencing approach, with the total heart samples being increased to 24. This study provides key insights that enhance our understanding of the cellular mechanisms related to the pathophysiology of ICM and could lead to the development of aetiology-specific heart failure therapies. ATPA could serve as a molecular target suitable for new therapeutic interventions.
机译:摘要线粒体功能障碍在缺血性心肌病(ICM)的发展中起着至关重要的作用。在这项研究中,首次通过定量差分电泳(2D-DIGE)和质谱(MS)对ICM患者心脏组织中的线粒体蛋白质组进行了分析,从而为这种心肌病的心脏功能障碍提供了新的见解。我们从ICM患者(n = 8)和对照供体(n = 8)的离体心脏的LV样品中分离出线粒体,并使用蛋白质组学方法研究了线粒体蛋白表达的变化。我们发现大多数改变的蛋白质都参与了心脏能量代谢(82%)。我们关注与能量产生有关的ATPA和涉及底物利用的二氢脂酰脱氢酶,并观察到这些分子过表达,并且在这些蛋白质介导的过程中检测到的变化密切相关。值得注意的是,我们发现ATPA过表达与左室重量减少有关(r = −0.74,P <0.01)。我们还发现伸长因子Tu(参与蛋白质合成的分子)和PRDX3参与应激反应的表达显着增加。所有这些变化均已通过经典技术验证,并通过使用新颖且精确的选定反应监测分析和RNA测序方法进行了验证,心脏总样本增加至24个。本研究提供了重要的见解,可增进我们对与以下疾病相关的细胞机制的了解ICM的病理生理学,并可能导致针对病因学的心力衰竭治疗方法的发展。 ATPA可以作为适合新治疗干预措施的分子靶标。

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