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The Secret Life of NAD+: An Old Metabolite Controlling New Metabolic Signaling Pathways

机译:NAD +的秘密生活:控制新代谢信号通路的旧代谢产物

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摘要

A century after the identification of a coenzymatic activity for NAD+, NAD+ metabolism has come into the spotlight again due to the potential therapeutic relevance of a set of enzymes whose activity is tightly regulated by the balance between the oxidized and reduced forms of this metabolite. In fact, the actions of NAD+ have been extended from being an oxidoreductase cofactor for single enzymatic activities to acting as substrate for a wide range of proteins. These include NAD+-dependent protein deacetylases, poly(ADP-ribose) polymerases, and transcription factors that affect a large array of cellular functions. Through these effects, NAD+ provides a direct link between the cellular redox status and the control of signaling and transcriptional events. Of particular interest within the metabolic/endocrine arena are the recent results, which indicate that the regulation of these NAD+-dependent pathways may have a major contribution to oxidative metabolism and life span extension. In this review, we will provide an integrated view on: 1) the pathways that control NAD+ production and cycling, as well as its cellular compartmentalization; 2) the signaling and transcriptional pathways controlled by NAD+; and 3) novel data that show how modulation of NAD+-producing and -consuming pathways have a major physiological impact and hold promise for the prevention and treatment of metabolic disease.
机译:在确定了NAD + 的辅酶活性后的一个世纪,由于一系列酶的潜在治疗相关性,NAD + 代谢再次受到关注。通过这种代谢物的氧化形式和还原形式之间的平衡来严格调节。实际上,NAD + 的作用已从单一酶活性的氧化还原酶辅因子扩展到充当多种蛋白质的底物。这些包括NAD + 依赖性蛋白脱乙酰酶,聚(ADP-核糖)聚合酶和影响多种细胞功能的转录因子。通过这些作用,NAD + 提供了细胞氧化还原状态与信号和转录事件控制之间的直接联系。最近在代谢/内分泌领域受到关注的最新结果表明,这些NAD + 依赖途径的调节可能对氧化代谢和寿命的延长有重要贡献。在这篇综述中,我们将提供以下方面的综合观点:1)控制NAD + 产生和循环以及其细胞区室化的途径; 2)NAD + 控制的信号转导和转录途径; 3)新的数据表明,调节NAD + 的产生和消耗途径如何产生重要的生理影响,并为预防和治疗代谢疾病提供了希望。

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