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Nox4 reprograms cardiac substrate metabolism via protein O-GlcNAcylation to enhance stress adaptation

机译:Nox4通过蛋白O-GlcNAcylation重编程心脏底物代谢以增强压力适应性

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摘要

Cardiac hypertrophic remodeling during chronic hemodynamic stress is associated with a switch in preferred energy substrate from fatty acids to glucose, usually considered to be energetically favorable. The mechanistic interrelationship between altered energy metabolism, remodeling, and function remains unclear. The ROS-generating NADPH oxidase-4 (Nox4) is upregulated in the overloaded heart, where it ameliorates adverse remodeling. Here, we show that Nox4 redirects glucose metabolism away from oxidation but increases fatty acid oxidation, thereby maintaining cardiac energetics during acute or chronic stresses. The changes in glucose and fatty acid metabolism are interlinked via a Nox4-ATF4–dependent increase in the hexosamine biosynthetic pathway, which mediates the attachment of O-linked N-acetylglucosamine (O-GlcNAcylation) to the fatty acid transporter CD36 and enhances fatty acid utilization. These data uncover a potentially novel redox pathway that regulates protein O-GlcNAcylation and reprograms cardiac substrate metabolism to favorably modify adaptation to chronic stress. Our results also suggest that increased fatty acid oxidation in the chronically stressed heart may be beneficial.
机译:慢性血液动力学压力期间的心肌肥大重塑与首选能量底物从脂肪酸到葡萄糖的转换有关,通常认为在能量上是有利的。能量代谢改变,重塑和功能之间的机械相互关系仍然不清楚。 ROS生成的NADPH氧化酶4(Nox4)在心脏超负荷时被上调,从而改善了不良的重塑。在这里,我们显示Nox4可以使葡萄糖代谢重新定向,从而远离氧化作用,但会增加脂肪酸的氧化作用,从而在急性或慢性应激时维持心脏能量。葡萄糖和脂肪酸代谢的变化通过六胺的生物合成途径的依赖于Nox4-ATF4的增加而相互关联,这介导了O-连接的N-乙酰氨基葡萄糖(O-GlcNAcylation)与脂肪酸转运蛋白CD36的结合并增强了脂肪酸利用率。这些数据揭示了一种潜在的新型氧化还原途径,该途径可调节蛋白O-GlcNAcy并重新编程心脏底物代谢以有利地改变对慢性应激的适应性。我们的研究结果还表明,在慢性应激的心脏中增加脂肪酸氧化可能是有益的。

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