School of Pharmacy, Jiangsu University, Zhenjiang 212013, P R China.
Mini Rev Med Chem. 2013 Jan;13(1):132-54.
Silent information regulator 2 (Sir2) enzymes or sirtuins are a family of evolutionarily conserved intracellular protein deacetylases that can catalyze the acetyl group removal from the specific Nε-acetyl-lysine (AcK) side chains on a variety of proteins from all kingdoms of life. Yeast Sir2 was the first sirtuin identified, and so far seven sirtuins (i.e. SIRT1-7) have been found in mammals including humans. The sirtuin-catalyzed deacetylation reaction has captured tremendous interest during the past a few years because of (i) its increasingly demonstrated importance in many crucial biological processes such as gene transcription, metabolism, and aging, and thus its therapeutic potential for metabolic and age-related diseases and cancer, and (ii) its unique deacetylation chemistry. Specifically, the sirtuin-catalyzed AcK side chain deacetylation is not merely an amide hydrolysis reaction, instead is coupled to the nicotinamide cleavage from β-nicotinamide adenine dinucleotide (β-NAD+ or NAD+) with the generation of three enzymatic products, i.e. the deacetylated protein species, nicotinamide, and 2'-O-acetyl-ADP-ribose (2'-O-AADPR). Here the author would like to review the past endeavors on developing mechanism-based sirtuin modulators (inhibitors and activators). The first part of this article will provide an updated mechanistic picture of the sirtuin-catalyzed deacetylation reaction. The second part will be focused on how the mechanistic knowledge has been exploited for the design of effective sirtuin modulators.
沉默信息调节因子 2(Sir2)酶或 Sirtuins 是一类进化上保守的细胞内蛋白去乙酰化酶,能够催化各种生物中特定的 Nε-乙酰-赖氨酸(AcK)侧链上的乙酰基从多种蛋白质上移除。酵母 Sir2 是第一个被鉴定的 Sirtuins,迄今为止,哺乳动物(包括人类)中已经发现了 7 种 Sirtuins(即 SIRT1-7)。由于(i)其在许多关键的生物学过程(如基因转录、代谢和衰老)中的重要性日益增加,以及因此在代谢和与年龄相关的疾病和癌症的治疗潜力,以及(ii)其独特的去乙酰化化学性质,Sirtuins 催化的去乙酰化反应引起了极大的兴趣。具体来说,Sirtuins 催化的 AcK 侧链去乙酰化不仅仅是酰胺水解反应,而是与β-烟酰胺腺嘌呤二核苷酸(β-NAD+或 NAD+)中的烟酰胺裂解偶联,生成三种酶促产物,即去乙酰化的蛋白质、烟酰胺和 2'-O-乙酰-ADP-核糖(2'-O-AADPR)。作者希望回顾过去在开发基于机制的 Sirtuins 调节剂(抑制剂和激活剂)方面的努力。本文的第一部分将提供 Sirtuins 催化的去乙酰化反应的最新机制图景。第二部分将集中讨论如何利用机制知识来设计有效的 Sirtuins 调节剂。