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白藜芦醇激活人类SIRT1的机制。

Mechanism of human SIRT1 activation by resveratrol.

作者信息

Borra Margie T, Smith Brian C, Denu John M

机构信息

Department of Biomolecular Chemistry, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.

出版信息

J Biol Chem. 2005 Apr 29;280(17):17187-95. doi: 10.1074/jbc.M501250200. Epub 2005 Mar 4.

Abstract

The NAD+-dependent protein deacetylase family, Sir2 (or sirtuins), is important for many cellular processes including gene silencing, regulation of p53, fatty acid metabolism, cell cycle regulation, and life span extension. Resveratrol, a polyphenol found in wines and thought to harbor major health benefits, was reported to be an activator of Sir2 enzymes in vivo and in vitro. In addition, resveratrol was shown to increase life span in three model organisms through a Sir2-dependent pathway. Here, we investigated the molecular basis for Sir2 activation by resveratrol. Among the three enzymes tested (yeast Sir2, human SIRT1, and human SIRT2), only SIRT1 exhibited significant enzyme activation ( approximately 8-fold) using the commercially available Fluor de Lys kit (BioMol). To examine the requirements for resveratrol activation of SIRT1, we synthesized three p53 acetylpeptide substrates either lacking a fluorophore or containing a 7-amino-4-methylcoumarin (p53-AMC) or rhodamine 110 (p53-R110). Although SIRT1 activation was independent of the acetylpeptide sequence, resveratrol activation was completely dependent on the presence of a covalently attached fluorophore. Substrate competition studies indicated that the fluorophore decreased the binding affinity of the peptide, and, in the presence of resveratrol, fluorophore-containing substrates bound more tightly to SIRT1. Using available crystal structures, a model of SIRT1 bound to p53-AMC peptide was constructed. Without resveratrol, the coumarin of p53-AMC peptide is solvent-exposed and makes no significant contacts with SIRT1. We propose that binding of resveratrol to SIRT1 promotes a conformational change that better accommodates the attached coumarin group.

摘要

NAD⁺依赖的蛋白质脱乙酰酶家族Sir2(或沉默调节蛋白)对许多细胞过程都很重要,包括基因沉默、p53调控、脂肪酸代谢、细胞周期调控以及寿命延长。白藜芦醇是一种存在于葡萄酒中的多酚,被认为具有诸多健康益处,据报道它在体内和体外都是Sir2酶的激活剂。此外,白藜芦醇通过Sir2依赖的途径在三种模式生物中显示出可延长寿命。在此,我们研究了白藜芦醇激活Sir2的分子基础。在所测试的三种酶(酵母Sir2、人SIRT1和人SIRT2)中,使用市售的Fluor de Lys试剂盒(BioMol),只有SIRT1表现出显著的酶激活(约8倍)。为了研究白藜芦醇激活SIRT1的条件,我们合成了三种p53乙酰化肽底物,一种不含荧光团,另外两种分别含有7-氨基-4-甲基香豆素(p53-AMC)或罗丹明110(p53-R110)。虽然SIRT1的激活与乙酰化肽序列无关,但白藜芦醇的激活完全依赖于共价连接的荧光团的存在。底物竞争研究表明,荧光团降低了肽的结合亲和力,并且在白藜芦醇存在的情况下,含荧光团的底物与SIRT1的结合更紧密。利用现有的晶体结构,构建了与p53-AMC肽结合的SIRT1模型。在没有白藜芦醇的情况下,p53-AMC肽的香豆素暴露于溶剂中,与SIRT1没有明显接触。我们提出,白藜芦醇与SIRT1的结合促进了构象变化,从而更好地容纳连接的香豆素基团。

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