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氨基香豆素类抗生素生物合成的结构与功能剖析:综述

Structural and functional dissection of aminocoumarin antibiotic biosynthesis: a review.

作者信息

Lawson David M, Stevenson Clare E M

机构信息

Department of Biological Chemistry, John Innes Centre, Norwich Research Park, Norwich, NR4 7UH, UK.

出版信息

J Struct Funct Genomics. 2012 Jun;13(2):125-33. doi: 10.1007/s10969-012-9138-2. Epub 2012 May 27.

Abstract

Aminocoumarin antibiotics are natural products of soil-dwelling bacteria called Streptomycetes. They are potent inhibitors of DNA gyrase, an essential bacterial enzyme and validated drug target, and thus have attracted considerable interest as potential templates for drug development. To date, aminocoumarins have not seen widespread clinical application on account of their poor pharmacological properties. Through studying the structures and mechanisms of enzymes from their biosynthetic pathways we will be better informed to redesign these compounds through rational pathway engineering. Novobiocin, the simplest compound, requires at least seventeen gene products to convert primary metabolites into the mature antibiotic. We have solved the crystal structures of four diverse biosynthetic enzymes from the novobiocin pathway, and used these as three-dimensional frameworks for the interpretation of functional and mechanistic data, and to speculate about how they might have evolved. The structure determinations have ranged from the routine to the challenging, necessitating a variety of different approaches.

摘要

氨基香豆素类抗生素是土壤放线菌产生的天然产物。它们是DNA促旋酶的强效抑制剂,DNA促旋酶是一种重要的细菌酶且是经过验证的药物靶点,因此作为药物开发的潜在模板引起了广泛关注。迄今为止,由于其不良的药理学性质,氨基香豆素尚未得到广泛的临床应用。通过研究其生物合成途径中酶的结构和机制,我们将能更好地通过合理的途径工程来重新设计这些化合物。新生霉素是最简单的化合物,它需要至少十七种基因产物才能将初级代谢产物转化为成熟的抗生素。我们已经解析了新生霉素途径中四种不同生物合成酶的晶体结构,并将其用作三维框架来解释功能和机制数据,并推测它们可能是如何进化的。结构测定范围从常规到具有挑战性,需要各种不同的方法。

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