Imai Shin-ichiro
Department of Developmental Biology, Washington University School of Medicine, Campus Box 8103, 660 South Euclid Avenue, St. Louis, MO 63110, USA.
Biochim Biophys Acta. 2009 Oct;1790(10):997-1004. doi: 10.1016/j.bbagen.2009.03.005. Epub 2009 Mar 13.
For the past couple of decades, aging science has been rapidly evolving, and powerful genetic tools have identified a variety of evolutionarily conserved regulators and signaling pathways for the control of aging and longevity in model organisms. Nonetheless, a big challenge still remains to construct a comprehensive concept that could integrate many distinct layers of biological events into a systemic, hierarchical view of aging. The "heterochromatin island" hypothesis was originally proposed 10 years ago to explain deterministic and stochastic aspects of cellular and organismal aging, which drove the author to the study of evolutionarily conserved Sir2 proteins. Since a surprising discovery of their NAD-dependent deacetylase activity, Sir2 proteins, now called "sirtuins," have been emerging as a critical epigenetic regulator for aging. In this review, I will follow the process of conceptual development from the heterochromatin island hypothesis to a novel, comprehensive concept of a systemic regulatory network for mammalian aging, named "NAD World," summarizing recent studies on the mammalian NAD-dependent deacetylase Sirt1 and nicotinamide phosphoribosyltransferase (Nampt)-mediated systemic NAD biosynthesis. This new concept of the NAD World provides critical insights into a systemic regulatory mechanism that fundamentally connects metabolism and aging and also conveys the ideas of functional hierarchy and frailty for the regulation of aging in mammals.
在过去几十年里,衰老科学发展迅速,强大的基因工具已在模式生物中鉴定出多种用于控制衰老和寿命的进化保守调节因子和信号通路。尽管如此,构建一个能将许多不同层面的生物学事件整合为衰老的系统、层次化观点的综合概念,仍是一个巨大挑战。“异染色质岛”假说是10年前最初提出的,用于解释细胞和机体衰老的确定性和随机性方面,这促使作者对进化保守的Sir2蛋白展开研究。自从意外发现其依赖NAD的脱乙酰酶活性后,Sir2蛋白(现称为“沉默调节蛋白”)已成为衰老的关键表观遗传调节因子。在这篇综述中,我将梳理从异染色质岛假说到一个关于哺乳动物衰老的全新综合概念——“NAD世界”(一个系统性调节网络)的概念发展过程,总结近期关于哺乳动物依赖NAD的脱乙酰酶Sirt1和烟酰胺磷酸核糖转移酶(Nampt)介导的系统性NAD生物合成的研究。NAD世界这一新概念为一种系统性调节机制提供了关键见解,该机制从根本上连接了代谢与衰老,同时也传达了哺乳动物衰老调节中的功能层次和脆弱性的概念。