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烟酰胺对酵母sir2和人类SIRT1的假定负调控作用:抑制基因沉默并加速衰老

Inhibition of silencing and accelerated aging by nicotinamide, a putative negative regulator of yeast sir2 and human SIRT1.

作者信息

Bitterman Kevin J, Anderson Rozalyn M, Cohen Haim Y, Latorre-Esteves Magda, Sinclair David A

机构信息

Department of Pathology, Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

J Biol Chem. 2002 Nov 22;277(47):45099-107. doi: 10.1074/jbc.M205670200. Epub 2002 Sep 23.

Abstract

The Saccharomyces cerevisiae Sir2 protein is an NAD(+)-dependent histone deacetylase that plays a critical role in transcriptional silencing, genome stability, and longevity. A human homologue of Sir2, SIRT1, regulates the activity of the p53 tumor suppressor and inhibits apoptosis. The Sir2 deacetylation reaction generates two products: O-acetyl-ADP-ribose and nicotinamide, a precursor of nicotinic acid and a form of niacin/vitamin B(3). We show here that nicotinamide strongly inhibits yeast silencing, increases rDNA recombination, and shortens replicative life span to that of a sir2 mutant. Nicotinamide abolishes silencing and leads to an eventual delocalization of Sir2 even in G(1)-arrested cells, demonstrating that silent heterochromatin requires continual Sir2 activity. We show that physiological concentrations of nicotinamide noncompetitively inhibit both Sir2 and SIRT1 in vitro. The degree of inhibition by nicotinamide (IC(50) < 50 microm) is equal to or better than the most effective known synthetic inhibitors of this class of proteins. We propose a model whereby nicotinamide inhibits deacetylation by binding to a conserved pocket adjacent to NAD(+), thereby blocking NAD(+) hydrolysis. We discuss the possibility that nicotinamide is a physiologically relevant regulator of Sir2 enzymes.

摘要

酿酒酵母Sir2蛋白是一种依赖烟酰胺腺嘌呤二核苷酸(NAD⁺)的组蛋白脱乙酰酶,在转录沉默、基因组稳定性和寿命方面发挥着关键作用。Sir2的人类同源物SIRT1可调节p53肿瘤抑制因子的活性并抑制细胞凋亡。Sir2的脱乙酰化反应产生两种产物:O-乙酰-ADP-核糖和烟酰胺,烟酰胺是烟酸的前体,也是烟酸/维生素B₃的一种形式。我们在此表明,烟酰胺强烈抑制酵母沉默,增加核糖体DNA(rDNA)重组,并将复制寿命缩短至sir2突变体的水平。烟酰胺消除沉默,甚至在G₁期停滞的细胞中也会导致Sir2最终发生定位改变,这表明沉默异染色质需要持续的Sir2活性。我们发现,生理浓度的烟酰胺在体外对Sir2和SIRT1均有非竞争性抑制作用。烟酰胺的抑制程度(半数抑制浓度[IC₅₀]<50微摩尔)等同于或优于这类蛋白质最有效的已知合成抑制剂。我们提出了一个模型,即烟酰胺通过与NAD⁺相邻的保守口袋结合来抑制脱乙酰化,从而阻断NAD⁺水解。我们讨论了烟酰胺可能是Sir2酶的生理相关调节因子这一可能性。

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