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复杂天然产物的区域选择性酶酰化:扩展分子多样性。

Regioselective enzymatic acylation of complex natural products: expanding molecular diversity.

机构信息

Entrechem, SL, Edificio Científico-Tecnológico, Campus del Cristo, 33006 Oviedo, Spain.

出版信息

Chem Soc Rev. 2011 Nov;40(11):5321-35. doi: 10.1039/c1cs15081b. Epub 2011 Jun 21.

Abstract

Enzymatic catalysis has become a common tool in both academia and industrial chemistry. The efforts of chemists over recent decades have led to the rationalization of the mechanism of action of biocatalysts, which have been routinely incorporated into many synthetic sequences. Nowadays, a further step consists in expanding the application of enzymes to the modification of complex molecular scaffolds common to many pharmaceutical leads isolated from nature. Regioselective enzymatic acylation is a process which has been profitably applied for this purpose in recent times, leading to new drugs with improved activity, stability and pharmacokinetic properties. This tutorial review provides an overview of this subject employing two classes of enzymes, hydrolases and acyltransferases, in the recently concluded decade although some representative older studies are commented upon, if required. We shall place special emphasis on those examples in which the novel acylated derivatives have improved the activity or properties of the parental molecules.

摘要

酶催化已成为学术界和工业化学中常用的工具。近年来,化学家们的努力使生物催化剂的作用机制合理化,它们已被常规地纳入许多合成序列中。如今,进一步的步骤是将酶的应用扩展到对天然分离的许多药物先导化合物中常见的复杂分子支架的修饰。区域选择性酶酰化是一种近年来为此目的而成功应用的过程,导致具有改善的活性、稳定性和药代动力学性质的新药。本综述以在过去十年中使用的两类酶,水解酶和酰基转移酶,对该主题进行了概述,尽管在需要时也会对一些有代表性的早期研究进行评论。我们将特别强调那些新型酰化衍生物提高母体分子活性或性质的例子。

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