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通过改进的链霉菌功能宏基因组学进行天然产物发现。

Natural Product Discovery through Improved Functional Metagenomics in Streptomyces.

机构信息

Laboratory of Genetically Encoded Small Molecules, The Rockefeller University , 1230 York Avenue, New York, New York 10065, United States.

出版信息

J Am Chem Soc. 2016 Aug 3;138(30):9341-4. doi: 10.1021/jacs.6b02921. Epub 2016 Jul 22.

Abstract

Because the majority of environmental bacteria are not easily culturable, access to many bacterially encoded secondary metabolites will be dependent on the development of improved functional metagenomic screening methods. In this study, we examined a collection of diverse Streptomyces species for the best innate ability to heterologously express biosynthetic gene clusters. We then optimized methods for constructing high quality metagenomic cosmid libraries in the best Streptomyces host. An initial screen of a 1.5 million-membered metagenomic library constructed in Streptomyces albus, the species that exhibited the highest propensity for heterologous expression of gene clusters, led to the identification of the novel natural product metatricycloene (1). Metatricycloene is a tricyclic polyene encoded by a reductive, iterative polyketide-like gene cluster. Related gene clusters found in sequenced genomes appear to encode a largely unexplored collection of structurally diverse, polyene-based metabolites.

摘要

由于大多数环境细菌不易培养,因此许多细菌编码的次级代谢产物的获得将依赖于改进的功能宏基因组筛选方法的发展。在这项研究中,我们研究了一系列不同的链霉菌物种,以确定其异源表达生物合成基因簇的最佳固有能力。然后,我们优化了在最佳链霉菌宿主中构建高质量宏基因组 cosmid 文库的方法。在链霉菌属中构建的 150 万个成员的宏基因组文库的初步筛选中,该物种对基因簇的异源表达表现出最高的倾向,导致了新型天然产物 metatricycloene(1)的鉴定。Metatricycloene 是一种三环多烯,由还原、迭代聚酮样基因簇编码。在测序基因组中发现的相关基因簇似乎编码了一大类结构多样的、基于多烯的代谢物,这些代谢物在很大程度上尚未被探索。

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