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首页> 外文期刊>Current opinion in gastroenterology >The regulation of nicotinamide adenine dinucleotide biosynthesis by Nampt/PBEF/visfatin in mammals.
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The regulation of nicotinamide adenine dinucleotide biosynthesis by Nampt/PBEF/visfatin in mammals.

机译:Nampt / PBEF / visfatin在哺乳动物中对烟酰胺腺嘌呤二核苷酸生物合成的调节。

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PURPOSE OF REVIEW: Nicotinamide adenine dinucleotide (NAD) is a classic coenzyme in cellular redox reactions. Recently, NAD biochemistry has also been implicated in a broader range of biological functions in mammals, but the regulation of NAD biosynthesis has been poorly investigated. Recent progress in the field of NAD biochemistry has fueled new interest in the NAD biosynthetic pathways from its precursors and their physiological roles in metabolism. This review summarizes the latest knowledge on the NAD biosynthetic pathways and focuses on one of the key NAD biosynthetic enzymes, namely, nicotinamide phosphoribosyltransferase. RECENT FINDINGS: Mammals predominantly use nicotinamide rather than nicotinic acid as a precursor for NAD biosynthesis. Nicotinamide phosphoribosyltransferase (Nampt) is the rate-limiting enzyme that converts nicotinamide to nicotinamide mononucleotide in the NAD biosynthetic pathway from nicotinamide in mammals. The same protein has also been identified as a cytokine (pre-B-cell colony-enhancing factor or PBEF) or an insulin-mimetic hormone (visfatin). SUMMARY: We propose that the presumed multiple effects of Nampt/PBEF/visfatin may be entirely explained by its role as an intra and extracellular NAD biosynthetic enzyme. We also propose a new model of Namp/PBEF/visfatin-mediated systemic NAD biosynthesis and its possible physiological significance. Our model provides an important insight into developing preventive/therapeutic interventions for metabolic complications, such as obesity and diabetes.
机译:审查目的:烟酰胺腺嘌呤二核苷酸(NAD)是细胞氧化还原反应中的经典辅酶。近来,NAD生物化学也已经涉及哺乳动物的更广泛的生物学功能,但是对NAD生物合成的调节的研究很少。 NAD生物化学领域中的最新进展激发了NAD生物合成途径的新兴趣,该途径涉及其前体及其在新陈代谢中的生理作用。这篇综述总结了有关NAD生物合成途径的最新知识,并重点介绍了一种关键的NAD生物合成酶,即烟酰胺磷酸核糖基转移酶。最近的发现:哺乳动物主要使用烟酰胺而不是烟酸作为NAD生物合成的前体。烟酰胺磷酸核糖基转移酶(Nampt)是限速酶,可在哺乳动物的NAD生物合成途径中将烟酰胺转化为烟酰胺单核苷酸。相同的蛋白质也被鉴定为细胞因子(B细胞前集落增强因子或PBEF)或模拟胰岛素激素(visfatin)。摘要:我们建议,Nampt / PBEF / visfatin的多重效应可能完全由其作为细胞内和细胞外NAD生物合成酶的作用来解释。我们还提出了Namp / PBEF / visfatin介导的系统NAD生物合成的新模型及其可能的生理意义。我们的模型为开发针对肥胖症和糖尿病等代谢并发症的预防/治疗干预措施提供了重要的见识。

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