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Autophagic program is regulated by miR-325

机译:自噬程序受miR-325调控

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Autophagy is required for the maintenance of cardiomyocytes homeostasis. However, the abnormal autophagy could lead to the development of heart failure. Autophagy is enhanced during myocardial ischemia/reperfusion; it remains to elucidate the molecular regulation of autophagy. We report here that miR-325, ARC and E2F1 constitute an axis that regulates autophagy. Our results showed that miR-325 expression is upregulated upon anoxia/reoxygenation and ischemia/reperfusion. Cardiomyocyte-specific overexpression of the miR-325 potentiates autophagic responses and myocardial infarct sizes, whereas knockdown of miR-325 inhibited autophagy and cell death. We searched for the downstream mediator of miR-325 and identified that ARC is a target of miR-325. ARC transgenic mice could attenuate autophagy and myocardial infarction sizes upon pressure-overload-induced heart failure, whereas ARC null mice exhibited an increased autophagic accumulation in the heart. The suppression of ARC by miR-325 led to its inability to repress autophagic program. In exploring the molecular mechanism by which miR-325 expression is regulated, our results revealed that the transcription factor E2F1 contributed to promote miR-325 expression. E2F1 null mice demonstrated reduced autophagy and myocardial infarction sizes upon ischemia/reperfusion. Our present study reveals a novel autophagic regulating model that is composed of E2F1, miR-325 and ARC. Modulation of their levels may provide a new approach for tackling cardiac failure.
机译:自噬是维持心肌细胞稳态所必需的。然而,异常的自噬可能导致心力衰竭的发展。心肌缺血/再灌注过程中自噬增强;有待阐明自噬的分子调控。我们在这里报告,miR-325,ARC和E2F1构成了调节自噬的轴。我们的结果表明,miR-325表达在缺氧/复氧和局部缺血/再灌注后被上调。 miR-325的心肌细胞特异性过表达增强了自噬反应和心肌梗塞的大小,而敲低miR-325则抑制了自噬和细胞死亡。我们搜索了miR-325的下游介体,并确定ARC是miR-325的靶标。 ARC转基因小鼠在压力超负荷引起的心力衰竭时可减轻自噬和心肌梗塞的大小,而ARC无基因小鼠在心脏中的自噬累积增加。 miR-325对ARC的抑制作用使其无法抑制自噬程序。在探索调控miR-325表达的分子机制中,我们的结果表明,转录因子E2F1有助于促进miR-325表达。 E2F1无效小鼠在缺血/再灌注后表现出自噬和心肌梗死面积减少。我们目前的研究揭示了一种新型的自噬调节模型,该模型由E2F1,miR-325和ARC组成。调节其水平可能为解决心力衰竭提供一种新方法。

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