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聚醚生物合成的酶学

The enzymology of polyether biosynthesis.

作者信息

Liu Tiangang, Cane David E, Deng Zixin

机构信息

Laboratory of Microbial Metabolism and School of Life Sciences and Biotechnology, Shanghai Jiaotong University, Shanghai, China.

出版信息

Methods Enzymol. 2009;459:187-214. doi: 10.1016/S0076-6879(09)04609-6.

Abstract

Polyether ionophore antibiotics are a special class of polyketides widely used in veterinary medicine, and as food additives in animal husbandry. In this article, we review current knowledge about the mechanism of polyether biosynthesis, and the genetic and biochemical strategies used for its study. Several clear differences distinguish it from traditional type I modular polyketide biosynthesis: polyether backbones are assembled by modular polyketide synthases but are modified by two key enzymes, epoxidase and epoxide hydrolase, to generate the product. All double bonds involved in the oxidative cyclization in the polyketide backbone are of E geometry. Chain release in the polyether biosynthetic pathway requires a special type II thioesterase which specifically hydrolyzes the polyether thioester. All these discoveries should be very helpful for a deep understanding of the biosynthetic mechanism of this class of important natural compounds, and for the targeted engineering of polyether derivatives.

摘要

聚醚离子载体抗生素是一类特殊的聚酮化合物,广泛应用于兽医学,并作为畜牧业中的食品添加剂。在本文中,我们综述了关于聚醚生物合成机制以及用于其研究的遗传和生化策略的现有知识。它与传统的I型模块化聚酮生物合成有几个明显的区别:聚醚骨架由模块化聚酮合酶组装,但由两种关键酶环氧酶和环氧水解酶修饰以生成产物。聚酮骨架中参与氧化环化的所有双键均为E构型。聚醚生物合成途径中的链释放需要一种特殊的II型硫酯酶,它能特异性水解聚醚硫酯。所有这些发现对于深入理解这类重要天然化合物的生物合成机制以及聚醚衍生物的靶向工程都将非常有帮助。

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