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烟酰胺、烟酰胺核苷和烟酸——在酵母的复制性和程序性衰老中的新作用。

Nicotinamide, Nicotinamide Riboside and Nicotinic Acid-Emerging Roles in Replicative and Chronological Aging in Yeast.

机构信息

Dipartimento di Biotecnologie e Bioscienze, Università di Milano-Bicocca, 2016 Milan, Italy.

ISBE.IT/SYSBIO Centre for Systems Biology, 2016 Milan, Italy.

出版信息

Biomolecules. 2020 Apr 15;10(4):604. doi: 10.3390/biom10040604.

Abstract

Nicotinamide, nicotinic acid and nicotinamide riboside are vitamin B3 precursors of NAD in the human diet. NAD has a fundamental importance for cellular biology, that derives from its essential role as a cofactor of various metabolic redox reactions, as well as an obligate co-substrate for NAD-consuming enzymes which are involved in many fundamental cellular processes including aging/longevity. During aging, a systemic decrease in NAD levels takes place, exposing the organism to the risk of a progressive inefficiency of those processes in which NAD is required and, consequently, contributing to the age-associated physiological/functional decline. In this context, dietary supplementation with NAD precursors is considered a promising strategy to prevent NAD decrease and attenuate in such a way several metabolic defects common to the aging process. The metabolism of NAD precursors and its impact on cell longevity have benefited greatly from studies performed in the yeast , which is one of the most established model systems used to study the aging processes of both proliferating (replicative aging) and non-proliferating cells (chronological aging). In this review we summarize important aspects of the role played by nicotinamide, nicotinic acid and nicotinamide riboside in NAD metabolism and how each of these NAD precursors contribute to the different aspects that influence both replicative and chronological aging. Taken as a whole, the findings provided by the studies carried out in are informative for the understanding of the complex dynamic flexibility of NAD metabolism, which is essential for the maintenance of cellular fitness and for the development of dietary supplements based on NAD precursors.

摘要

烟酰胺、烟酸和烟酰胺核糖是人类饮食中 NAD 的维生素 B3 前体。NAD 对细胞生物学具有重要意义,这源于其作为各种代谢氧化还原反应的辅酶的基本作用,以及作为参与许多基本细胞过程(包括衰老/长寿)的 NAD 消耗酶的必需共底物的作用。在衰老过程中,NAD 水平会全身性下降,使机体面临需要 NAD 的那些过程效率逐渐降低的风险,从而导致与年龄相关的生理/功能下降。在这种情况下,用 NAD 前体进行饮食补充被认为是预防 NAD 减少的一种有前途的策略,并以这种方式减轻与衰老过程中常见的几种代谢缺陷。烟酰胺、烟酸和烟酰胺核糖在 NAD 代谢中的作用及其对细胞寿命的影响,得益于在酵母中进行的研究,酵母是用于研究增殖(复制性衰老)和非增殖细胞(程序性衰老)衰老过程的最成熟的模型系统之一。在这篇综述中,我们总结了烟酰胺、烟酸和烟酰胺核糖在 NAD 代谢中发挥作用的重要方面,以及这些 NAD 前体中的每一种如何有助于影响复制性和程序性衰老的不同方面。总的来说,在中进行的研究提供的发现有助于理解 NAD 代谢的复杂动态灵活性,这对于维持细胞健康和开发基于 NAD 前体的饮食补充剂至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/774b/7226615/db1f4d8f1122/biomolecules-10-00604-g001.jpg

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