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血清素N-乙酰基转移酶烷基转移酶活性的机制研究。

Mechanistic studies on the alkyltransferase activity of serotonin N-acetyltransferase.

作者信息

Zheng W, Scheibner K A, Ho A K, Cole P A

机构信息

Department of Pharmacology and Molecular Sciences, The Johns Hopkins University School of Medicine, Baltimore MD 21205, USA.

出版信息

Chem Biol. 2001 Apr;8(4):379-89. doi: 10.1016/s1074-5521(01)00020-5.

Abstract

BACKGROUND

Serotonin N-acetyltransferase (arylalkylamine N-acetyltransferase, AANAT) catalyzes the first, rate-limiting step in the biosynthesis of the circadian hormone melatonin (5-methoxy-N-acetyltryptamine) from serotonin. Our recent discovery that, in addition to catalyzing the acetyl transfer from acetyl-coenzyme A (acetyl-CoASH) to serotonin, AANAT is also a robust catalyst for the alkyl transfer reaction between CoASH and N-bromoacetyltryptamine has not only opened up a new way to develop cell-permeable AANAT acetyltransferase inhibitors that are valuable in vivo tools in helping elucidate melatonin's (patho)physiological roles, but has also raised a question - how does AANAT accelerate the alkyl transfer reaction? In this study, mechanistic aspects of the AANAT-catalyzed alkyl transfer reaction were explored by employing CoASH and a series of N-haloacetyltryptamines that were also evaluated for their AANAT acetyltransferase inhibitory activities.

RESULTS

Investigation of various N-haloacetyltryptamine analogs showed a similar leaving group effect on the enzymatic and non-enzymatic reaction rates. Steady-state kinetic analyses demonstrated that AANAT alkyltransferase obeys a sequential, ternary complex mechanism, with random substrate binding. Rate versus pH profiles revealed the catalytic importance of an ionizable group with pK(a) of approximately 7. All those N-haloacetyltryptamines that serve as substrates of AANAT alkyltransferase are also potent (low micromolar) in vitro inhibitors against AANAT acetyltransferase activity. In particular, N-chloroacetyltryptamine was also shown to be a potent inhibitor of intracellular melatonin production in a pineal cell culture assay.

CONCLUSIONS

This is the first detailed investigation of the alkyltransferase activity associated with an acetyltransferase. Our results indicate that AANAT does not accelerate the alkyl transfer reaction by simple approximation effect as previously proposed for the similar alkyl transfer reaction catalyzed by other acyltransferases. This study has general implications for developing novel inhibitors by taking advantage of the promiscuous alkyltransferase activity associated with several acyltransferases.

摘要

背景

血清素N - 乙酰基转移酶(芳基烷基胺N - 乙酰基转移酶,AANAT)催化从血清素生物合成昼夜节律激素褪黑素(5 - 甲氧基 - N - 乙酰色胺)的第一步限速反应。我们最近发现,除了催化乙酰辅酶A(acetyl - CoASH)向血清素的乙酰基转移外,AANAT还是CoASH与N - 溴乙酰色胺之间烷基转移反应的高效催化剂。这不仅为开发细胞可渗透的AANAT乙酰基转移酶抑制剂开辟了一条新途径,这些抑制剂是帮助阐明褪黑素(病理)生理作用的有价值的体内工具,还引发了一个问题——AANAT如何加速烷基转移反应?在本研究中,通过使用CoASH和一系列N - 卤代乙酰色胺探索了AANAT催化的烷基转移反应的机制方面,这些N - 卤代乙酰色胺也被评估了它们对AANAT乙酰基转移酶的抑制活性。

结果

对各种N - 卤代乙酰色胺类似物的研究表明,离去基团对酶促反应和非酶促反应速率有相似的影响。稳态动力学分析表明,AANAT烷基转移酶遵循有序的三元复合物机制,底物随机结合。速率与pH曲线揭示了一个pK(a)约为7的可电离基团的催化重要性。所有作为AANAT烷基转移酶底物的N - 卤代乙酰色胺在体外也是AANAT乙酰基转移酶活性的有效(低微摩尔)抑制剂。特别是,在松果体细胞培养试验中,N - 氯乙酰色胺也被证明是细胞内褪黑素产生的有效抑制剂。

结论

这是对与乙酰基转移酶相关的烷基转移酶活性的首次详细研究。我们的结果表明,AANAT不像之前对其他酰基转移酶催化的类似烷基转移反应所提出的那样,通过简单的接近效应来加速烷基转移反应。这项研究对于利用与几种酰基转移酶相关的混杂烷基转移酶活性开发新型抑制剂具有普遍意义。

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