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Hypoxia-induced alteration of mitochondrial genes in cardiomyocytes: role of Bnip3 and Pdk1.

机译:低氧诱导的线粒体基因的改变在心肌细胞:Bnip3的作用和基因。

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摘要

The hypoxic conditions induced by reduced blood flow decreases oxygen availability in target tissues. Cellular hypoxia leads to mitochondrial dysfunction, decreased energy production, and increased production of reactive oxygen species. To determine the alteration in expression of mitochondrial genes after hypoxia in cardiomyocytes, we developed a rodent mitochondrial gene chip (RoMitoChip). The chip had 1088 probe sets including 46 probe sets representing 37 mouse mitochondrial DNA transcripts and the remaining probe sets representing mouse nuclear genes contributing to the mitochondrial structure and function. Mouse cardiomyocytes isolated from neonatal C57BL/6 mice that were subjected to hypoxia (1% oxygen) for different time intervals demonstrated a dichotomy in the expression profile of tRNA and mRNA transcripts. We report a total of 483 signature genes that were altered by hypoxia in the cardiac myocytes and related to mitochondrial structure and function. This includes 23 transcripts on mitochondrial DNA. Pathway analysis demonstrated predominant changes in the expression of genes involved in oxidative phosphorylation, glucose and fatty acid metabolism, and apoptosis. The most upregulated genes after 24 h of hypoxia included hypoxia-inducible factor 1, alpha subunit, inducible genes Bnip3, Pdk1, and Aldoc. Whereas Bnip3 is important in the cardiomyocyte death pathway, Pdk1 enzyme is critical in conserving mitochondrial function by diverting metabolic intermediates to glycolysis. This study identifies the participation of two important pathways, cell death and glycolytic, and two key proteins, Bnip3 and Pdk1, playing critical roles in these pathways in cardiomyocytes after severe hypoxia.
机译:缺氧条件下引起的血液减少流减少氧的可用性目标组织。功能障碍,降低能源生产增加活性氧的生产。确定表达式的变更线粒体基因在缺氧心肌细胞,我们开发了一个啮齿动物线粒体基因芯片(RoMitoChip)。有1088探针集包括46个探针集代表37小鼠线粒体DNA成绩单和剩下的探针集代表鼠标核基因导致线粒体的结构和功能。心肌细胞分离出新生儿C57BL / 6老鼠受到缺氧(1%氧气)表现出不同的时间间隔在tRNA的表达谱和二分法信使rna转录。签名基因改变的缺氧心脏细胞和线粒体有关结构和功能。在线粒体DNA转录。分析了主要的变化在氧化相关基因的表达磷酸化、葡萄糖和脂肪酸代谢和细胞凋亡。包括基因经过24小时的缺氧低氧诱导因子1α亚基Bnip3诱导基因,基因和Aldoc。Bnip3的心肌细胞死亡是很重要的通路、基因酶是保护的关键线粒体通过转移代谢功能糖酵解的中间体。确定了两个重要的参与通路、细胞死亡和糖酵解和两个关键蛋白质,Bnip3的基因,扮演重要的角色在这些途径在心肌细胞严重缺氧。

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