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Crystal structures of Sirt3 complexes with 4′-bromo-resveratrol reveal binding sites and inhibition mechanism

机译:具有4'-溴-白藜芦醇的Sirt3配合物的晶体结构揭示了结合位点和抑制机制

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摘要

Sirtuins are protein deacetylases regulating aging processes and various physiological functions. Resveratrol, a polyphenol found in red wine, activates human Sirt1 and inhibits Sirt3, and it can mimic calorie restriction effects, such as lifespan extension in lower organisms. The mechanism of Sirtuin modulation by resveratrol is not well understood. We used 4′-bromo- resveratrol (5-(2-(4-hydroxyphenyl)vinyl)-1,3-benzenediol) to study Sirt1 and Sirt3 modulation. Despite its similarity to the Sirt1 activator resveratrol, the compound potently inhibited both, Sirt1 and Sirt3. Crystal structures of Sirt3 in complex with a fluorophore-labeled and with a native substrate peptide, respectively, in presence of 4′-bromo-resveratrol reveal two compound binding sites. Biochemical studies identify the internal site and substrate competition as the mechanism for inhibition, providing a drug target site, and homology modeling suggests that the second, allosteric site might indicate the site for Sirt1 activation.
机译:Sirtuins是调节衰老过程和各种生理功能的蛋白质脱乙酰基酶。白藜芦醇,一种在红酒中发现的多酚,可以激活人类Sirt1并抑制Sirt3,并且可以模仿卡路里限制作用,例如延长下层生物的寿命。白藜芦醇对Sirtuin调节的机制尚不清楚。我们使用4'-溴白藜芦醇(5-(2-(4-(4-羟基苯基)乙烯基)-1,3-苯二酚)研究Sirt1和Sirt3的调制。尽管它与Sirt1激活剂白藜芦醇相似,但该化合物有效抑制Sirt1和Sirt3。在存在4'-溴-白藜芦醇的情况下,Sirt3的晶体结构分别与荧光团标记的复合物和天然底物肽复合,显示出两个化合物结合位点。生化研究确定内部位点和底物竞争是抑制的机制,提供了药物靶位点,同源性模型表明第二个变构位点可能表明Sirt1激活的位点。

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