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From Arylamine N-Acetyltransferase to Folate-Dependent Acetyl CoA Hydrolase: Impact of Folic Acid on the Activity of (HUMAN)NAT1 and Its Homologue (MOUSE)NAT2

机译:从芳胺N-乙酰基转移酶到叶酸依赖性乙酰辅酶A水解酶:叶酸对(HUMAN)NAT1及其同源物(MOUSE)NAT2活性的影响

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摘要

Acetyl Coenzyme A-dependent N-, O- and N,O-acetylation of aromatic amines and hydrazines by arylamine N-acetyltransferases is well characterised. Here, we describe experiments demonstrating that human arylamine N-acetyltransferase Type 1 and its murine homologue (Type 2) can also catalyse the direct hydrolysis of acetyl Coenzyme A in the presence of folate. This folate-dependent activity is exclusive to these two isoforms; no acetyl Coenzyme A hydrolysis was found when murine arylamine N-acetyltransferase Type 1 or recombinant bacterial arylamine N-acetyltransferases were incubated with folate. Proton nuclear magnetic resonance spectroscopy allowed chemical modifications occurring during the catalytic reaction to be analysed in real time, revealing that the disappearance of acetyl CH 3 from acetyl Coenzyme A occurred concomitantly with the appearance of a CH 3 peak corresponding to that of free acetate and suggesting that folate is not acetylated during the reaction. We propose that folate is a cofactor for this reaction and suggest it as an endogenous function of this widespread enzyme. Furthermore, in silico docking of folate within the active site of human arylamine N-acetyltransferase Type 1 suggests that folate may bind at the enzyme’s active site, and facilitate acetyl Coenzyme A hydrolysis. The evidence presented in this paper adds to our growing understanding of the endogenous roles of human arylamine N-acetyltransferase Type 1 and its mouse homologue and expands the catalytic repertoire of these enzymes, demonstrating that they are by no means just xenobiotic metabolising enzymes but probably also play an important role in cellular metabolism. These data, together with the characterisation of a naphthoquinone inhibitor of folate-dependent acetyl Coenzyme A hydrolysis by human arylamine N-acetyltransferase Type 1/murine arylamine N-acetyltransferase Type 2, open up a range of future avenues of exploration, both for elucidating the developmental role of these enzymes and for improving chemotherapeutic approaches to pathological conditions including estrogen receptor-positive breast cancer.
机译:芳族胺N-乙酰基转移酶对芳香胺和肼的乙酰辅酶A依赖性N-,O-和N,O-乙酰化具有良好的特征。在这里,我们描述了实验,证明人1型芳基胺N-乙酰基转移酶及其鼠类同系物(2型)在叶酸存在下也能催化乙酰辅酶A的直接水解。叶酸依赖的活性是这两种同工型所独有的。将鼠类芳基胺N-乙酰基转移酶1型或重组细菌芳基胺N-乙酰基转移酶与叶酸一起孵育时,未发现乙酰基辅酶A水解。质子核磁共振波谱可以实时分析催化反应过程中发生的化学修饰,表明乙酰辅酶A中乙酰CH 3的消失与相应游离乙酸盐的CH 3峰的出现同时发生,提示叶酸在反应过程中不被乙酰化。我们建议叶酸是该反应的辅助因子,并建议其作为这种广泛酶的内源功能。此外,叶酸在人类1型芳基胺N-乙酰基转移酶的活性位点上的计算机对接表明,叶酸可能在酶的活性位点结合,并促进乙酰辅酶A水解。本文提供的证据增加了我们对1型人芳基胺N-乙酰基转移酶及其小鼠同源物的内源性作用的日益了解,并扩展了这些酶的催化范围,表明它们绝不仅是异源代谢酶,而且可能在细胞代谢中起重要作用。这些数据以及叶酸依赖型乙酰辅酶A的萘醌抑制剂通过人1型芳基胺N-乙酰基转移酶/ 2型鼠芳基胺N-乙酰基转移酶的水解作用的特性,开辟了一系列未来的探索途径,均用于阐明这些酶的开发作用以及改善包括雌激素受体阳性乳腺癌在内的病理状况的化学治疗方法。

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