Hirsch Brett M, Burgos Emmanuel S, Schramm Vern L
Department of Biochemistry, Albert Einstein College of Medicine , 1300 Morris Park Avenue, Bronx, New York 10461, United States.
ACS Chem Biol. 2014 Oct 17;9(10):2255-62. doi: 10.1021/cb500485w. Epub 2014 Aug 5.
Macrodomains, including the human macrodomain 1 (MacroD1), are erasers of the post-translational modification of monoadenosinediphospho-ribosylation and hydrolytically deacetylate the sirtuin product O-acetyl-ADP-ribose (OAADPr). OAADPr has been reported to play a role in cell signaling based on oocyte microinjection studies, and macrodomains affect an array of cell processes including transcription and response to DNA damage. Here, we investigate human MacroD1 by transition-state (TS) analysis based on kinetic isotope effects (KIEs) from isotopically labeled OAADPr substrates. Competitive radiolabeled-isotope effects and mass spectrometry were used to obtain KIE data to yield intrinsic KIE values. Intrinsic KIEs were matched to a quantum chemical structure of the TS that includes the active site residues Asp184 and Asn174 and a structural water molecule. Transition-state analysis supports a concerted mechanism with an early TS involving simultaneous nucleophilic water attack and leaving group bond cleavage where the breaking C-O ester bond=1.60 Å and the C-O bond to the attacking water nucleophile=2.30 Å. The MacroD1 TS provides mechanistic understanding of the OAADPr esterase chemistry.
包括人类巨结构域1(MacroD1)在内的巨结构域,是单磷酸腺苷二磷酸核糖基化翻译后修饰的去修饰酶,可水解去乙酰化沉默调节蛋白产物O-乙酰基-ADP-核糖(OAADPr)。基于卵母细胞显微注射研究,据报道OAADPr在细胞信号传导中发挥作用,并且巨结构域影响一系列细胞过程,包括转录和对DNA损伤的反应。在这里,我们基于来自同位素标记的OAADPr底物的动力学同位素效应(KIEs),通过过渡态(TS)分析来研究人类MacroD1。使用竞争性放射性标记同位素效应和质谱来获得KIE数据,以产生内在KIE值。内在KIE与TS的量子化学结构相匹配,该结构包括活性位点残基Asp184和Asn174以及一个结构水分子。过渡态分析支持一种协同机制,其早期TS涉及亲核水的同时攻击和离去基团键的断裂,其中断裂的C-O酯键 = 1.60 Å,与攻击水亲核试剂的C-O键 = 2.30 Å。MacroD1的TS为OAADPr酯酶化学提供了机理上的理解。