Department of Experimental, Diagnostic and Specialty Medicine (DIMES), University of Bologna, Italy.
Curr Top Med Chem. 2013;13(23):2918-29. doi: 10.2174/15680266113136660207.
In recent years the study of nicotinamide adenine dinucleotide (NAD) biochemistry has been the focus of attention for many researchers. Although the role of NAD in cellular metabolism and in redox reactions had been recognized for over a century, it was also during these recent studies that the precise identification of all NAD biosynthetic routes was achieved and that the variety of NAD controlled cellular processes began to emerge. Being vital not only for energy transduction, but also for intracellular signaling pathways, this pyridine nucleotide can be considered the most important link between energetic and regulatory processes. The control of such important events suggested NAD as a possible therapeutic target for the control of different pathological states, including metabolic disorders and neoplastic transformation. This review briefly summarizes the recent advances achieved in this field.
近年来,烟酰胺腺嘌呤二核苷酸(NAD)生物化学的研究一直是许多研究人员关注的焦点。尽管 NAD 在细胞代谢和氧化还原反应中的作用已经被认识了一个多世纪,但正是在最近的这些研究中,才实现了对所有 NAD 生物合成途径的精确鉴定,以及 NAD 控制的细胞过程的多样性开始显现出来。作为不仅对能量转导而且对细胞内信号通路至关重要的吡啶核苷酸,它可以被认为是能量和调节过程之间最重要的联系。这些重要事件的控制表明 NAD 可能是控制包括代谢紊乱和肿瘤转化在内的不同病理状态的潜在治疗靶点。本文简要总结了该领域的最新进展。