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人类 NAD 生物合成——酶、代谢物和治疗方面。

NAD biosynthesis in humans--enzymes, metabolites and therapeutic aspects.

机构信息

Department of Molecular Biology, University of Bergen, Thormøhlensgate 55, 5008 Bergen, Norway.

出版信息

Curr Top Med Chem. 2013;13(23):2907-17. doi: 10.2174/15680266113136660206.

Abstract

NAD plays a major role in all cells as substrate for signal transduction and as cofactor in metabolic redox reactions. Since NAD-dependent signaling involves degradation of the nucleotide, continuous restoration of cellular NAD pools is essential. Moreover, NAD-dependent signaling reactions, which include ADP-ribosylation, protein deacetylation by sirtuins and calcium messenger synthesis, are regulated by NAD availability. Consequently, perturbations of NAD supply can have severe consequences and, in fact, have been associated with major human diseases such as age- and diet-induced disorders, neurodegenerative diseases and cancer. Given the increasing awareness of the biological roles of NAD, the routes, molecular mechanisms and regulation of NAD biosynthesis have been the subject of intense research over the last decade. Impressive progress has been made regarding the molecular identification, functional and structural characterization as well as regulation of the human NAD biosynthetic enzymes. Exciting therapeutic concepts have emerged, which aim at modulation of NAD availability by interfering with the biosynthetic network to prevent, reduce or reverse pathological conditions. Since there are several entry points into NAD synthesis, including the known vitamin B3 precursors nicotinamide and nicotinic acid, targeted nutritional supplementation is likely to have beneficial effects in various diseases. On the other hand, inhibition of NAD synthesis promotes cell death and has emerged as a therapeutic concept for cancer treatment.

摘要

NAD 在所有细胞中都起着重要作用,既是信号转导的底物,也是代谢氧化还原反应的辅助因子。由于 NAD 依赖性信号涉及核苷酸的降解,因此持续恢复细胞 NAD 池是必不可少的。此外,NAD 依赖性信号反应,包括 ADP-ribosylation、sirtuins 介导的蛋白质去乙酰化和钙信使合成,受 NAD 可用性的调节。因此,NAD 供应的干扰可能会产生严重的后果,事实上,已经与人类的一些重大疾病有关,如年龄和饮食引起的疾病、神经退行性疾病和癌症。鉴于人们对 NAD 的生物学作用的认识不断提高,过去十年中,人们对 NAD 生物合成的途径、分子机制和调控进行了深入的研究。在分子鉴定、功能和结构特征以及人类 NAD 生物合成酶的调控方面取得了令人瞩目的进展。出现了令人兴奋的治疗概念,旨在通过干扰生物合成网络来调节 NAD 的可用性,以预防、减少或逆转病理状况。由于 NAD 合成有几个切入点,包括已知的维生素 B3 前体烟酰胺和烟酸,因此有针对性的营养补充可能对各种疾病有有益的影响。另一方面,抑制 NAD 合成会促进细胞死亡,并已成为癌症治疗的一种治疗概念。

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