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线粒体中的 NAD 和 ADP-ribose 代谢。

NAD and ADP-ribose metabolism in mitochondria.

机构信息

Department of Molecular Biology, University of Bergen, Bergen, Norway.

出版信息

FEBS J. 2013 Aug;280(15):3530-41. doi: 10.1111/febs.12304. Epub 2013 Jun 3.

Abstract

Mitochondrial metabolism is intimately connected to the universal coenzyme NAD. In addition to its role in redox reactions of energy transduction, NAD serves as substrate in regulatory reactions that lead to its degradation. Importantly, all types of the known NAD-consuming signalling reactions have been reported to take place in mitochondria. These reactions include the generation of second messengers, as well as post-translational protein modifications such as ADP-ribosylation and protein deacetylation. Therefore, the availability and redox state of NAD emerged as important factors in the regulation of mitochondrial metabolism. Molecular mechanisms and targets of mitochondrial NAD-dependent protein deacetylation and mono-ADP-ribosylation have been established, whereas poly-ADP-ribosylation and NAD-derived messenger generation in the organelles await in-depth characterization. In this review, we highlight the major NAD-dependent reactions occurring within mitochondria and describe their metabolic and regulatory functions. We also discuss the metabolic fates of the NAD-degradation products, nicotinamide and ADP-ribose, and how the mitochondrial NAD pool is restored.

摘要

线粒体代谢与普遍辅酶 NAD 密切相关。除了在能量转导的氧化还原反应中发挥作用外,NAD 还作为调节反应的底物,导致其降解。重要的是,所有已知的消耗 NAD 的信号转导反应类型都被报道发生在线粒体中。这些反应包括第二信使的产生,以及翻译后蛋白质修饰,如 ADP-核糖基化和蛋白质去乙酰化。因此,NAD 的可用性和氧化还原状态成为调节线粒体代谢的重要因素。已经确定了线粒体 NAD 依赖性蛋白去乙酰化和单 ADP-核糖基化的分子机制和靶点,而细胞器中的多 ADP-核糖基化和 NAD 衍生信使的产生仍有待深入表征。在这篇综述中,我们强调了在线粒体中发生的主要 NAD 依赖性反应,并描述了它们的代谢和调节功能。我们还讨论了 NAD 降解产物烟酰胺和 ADP-核糖的代谢命运,以及线粒体 NAD 池如何得到恢复。

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