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抗生素匹马霉素的生物技术生产与应用:生物合成及其调控

Biotechnological production and application of the antibiotic pimaricin: biosynthesis and its regulation.

作者信息

Aparicio Jesús F, Barreales Eva G, Payero Tamara D, Vicente Cláudia M, de Pedro Antonio, Santos-Aberturas Javier

机构信息

Area of Microbiology, Faculty of Biology, Universidad de León, 24071, León, Spain.

Dynamique des Génomes et Adaptation Microbienne, UMR 1128, INRA, Université de Lorraine, 54506, Vandoeuvre-lès-Nancy, France.

出版信息

Appl Microbiol Biotechnol. 2016 Jan;100(1):61-78. doi: 10.1007/s00253-015-7077-0. Epub 2015 Oct 29.

Abstract

Pimaricin (natamycin) is a small polyene macrolide antibiotic used worldwide. This efficient antimycotic and antiprotozoal agent, produced by several soil bacterial species of the genus Streptomyces, has found application in human therapy, in the food and beverage industries and as pesticide. It displays a broad spectrum of activity, targeting ergosterol but bearing a particular mode of action different to other polyene macrolides. The biosynthesis of this only antifungal agent with a GRAS status has been thoroughly studied, which has permitted the manipulation of producers to engineer the biosynthetic gene clusters in order to generate several analogues. Regulation of its production has been largely unveiled, constituting a model for other polyenes and setting the leads for optimizing the production of these valuable compounds. This review describes and discusses the molecular genetics, uses, mode of action, analogue generation, regulation and strategies for increasing pimaricin production yields.

摘要

匹马霉素(纳他霉素)是一种在全球范围内使用的小型多烯大环内酯类抗生素。这种由链霉菌属的几种土壤细菌产生的高效抗真菌和抗原虫剂,已在人类治疗、食品和饮料行业以及作为杀虫剂中得到应用。它具有广泛的活性谱,靶向麦角固醇,但具有与其他多烯大环内酯不同的特殊作用方式。这种唯一具有一般认为安全(GRAS)地位的抗真菌剂的生物合成已得到深入研究,这使得能够对生产者进行操纵,以改造生物合成基因簇,从而产生几种类似物。其生产的调控已基本明确,构成了其他多烯类的模型,并为优化这些有价值化合物的生产提供了线索。本综述描述并讨论了匹马霉素的分子遗传学、用途、作用方式、类似物生成、调控以及提高其产量的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4cf4/4700089/573cc48a3209/253_2015_7077_Fig1_HTML.jpg

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