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The PPAR... formula ...-PGC-1... formula ... Axis Controls Cardiac Energy Metabolism in Healthy and Diseased Myocardium

机译:PPAR ...公式...-PGC-1 ...公式...轴控制健康和患病心肌的心脏能量代谢

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摘要

The mammalian myocardium is an omnivorous organ that relies on multiple substrates in order to fulfill its tremendous energy demands. Cardiac energy metabolism preference is regulated at several critical points, including at the level of gene transcription. Emerging evidence indicates that the nuclear receptor PPARα and its cardiac-enriched coactivator protein, PGC-1α, play important roles in the transcriptional control of myocardial energy metabolism. The PPARα-PGC-1α complex controls the expression of genes encoding enzymes involved in cardiac fatty acid and glucose metabolism as well as mitochondrial biogenesis. Also, evidence has emerged that the activity of the PPARα-PGC-1α complex is perturbed in several pathophysiologic conditions and that altered activity of this pathway may play a role in cardiomyopathic remodeling. In this review, we detail the current understanding of the effects of the PPARα-PGC-1α axis in regulating mitochondrial energy metabolism and cardiac function in response to physiologic and pathophysiologic stimuli.
机译:哺乳动物的心肌是杂食性器官,它依靠多种底物来满足其巨大的能量需求。心脏能量代谢的偏好在几个关键点受到调节,包括基因转录水平。新兴证据表明,核受体PPARα及其富含心脏的辅助激活蛋白PGC-1α在心肌能量代谢的转录控制中起着重要作用。 PPARα-PGC-1α复合物控制着编码参与心脏脂肪酸和葡萄糖代谢以及线粒体生物发生的酶的基因的表达。而且,已经出现证据表明PPARα-PGC-1α复合物的活性在几种病理生理条件下会受到干扰,并且该途径的活性改变可能在心肌病重塑中起作用。在这篇综述中,我们详细介绍了当前对PPARα-PGC-1α轴在响应生理和病理生理刺激而调节线粒体能量代谢和心脏功能方面的作用的了解。

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