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通过克隆和比较分析新型大环内酯 ML-449 的生物合成基因簇,深入了解大环内酯生物合成的进化。

Insights into the evolution of macrolactam biosynthesis through cloning and comparative analysis of the biosynthetic gene cluster for a novel macrocyclic lactam, ML-449.

机构信息

Department of Biotechnology, Norwegian University of Science and Technology, N-7491 Trondheim, Norway.

出版信息

Appl Environ Microbiol. 2010 Jan;76(1):283-93. doi: 10.1128/AEM.00744-09. Epub 2009 Oct 23.

Abstract

A new compound, designated ML-449, structurally similar to the known 20-membered macrolactam BE-14106, was isolated from a marine sediment-derived Streptomyces sp. Cloning and sequencing of the 83-kb ML-449 biosynthetic gene cluster revealed its high level of similarity to the BE-14106 gene cluster. Comparison of the respective biosynthetic pathways indicated that the difference in the compounds' structures stems from the incorporation of one extra acetate unit during the synthesis of the acyl side chain. A phylogenetic analysis of the beta-ketosynthase (KS) domains from polyketide synthases involved in the biosynthesis of macrolactams pointed to a common ancestry for the two clusters. Furthermore, the analysis demonstrated the formation of a macrolactam-specific subclade for the majority of the KS domains from several macrolactam-biosynthetic gene clusters, indicating a closer relationship between macrolactam clusters than with the macrolactone clusters included in the analysis. Some KS domains from the ML-449, BE-14106, and salinilactam gene clusters did, however, show a closer relationship with KS domains from the polyene macrolide clusters, suggesting potential acquisition rather than duplication of certain PKS genes. Comparison of the ML-449, BE-14106, vicenistatin, and salinilactam biosynthetic gene clusters indicated an evolutionary relationship between them and provided new insights into the processes governing the evolution of small-ring macrolactam biosynthesis.

摘要

一种新的化合物,命名为 ML-449,结构上与已知的 20 元大环内酯 BE-14106 相似,从海洋沉积物来源的链霉菌 sp 中分离得到。克隆和测序 ML-449 生物合成基因簇的 83kb 大小表明其与 BE-14106 基因簇高度相似。比较各自的生物合成途径表明,化合物结构的差异源于在酰基侧链合成过程中掺入一个额外的醋酸盐单元。参与大环内酯合成的聚酮合酶β-酮基合成酶(KS)结构域的系统发育分析表明,两个基因簇具有共同的祖先。此外,该分析还表明,大多数大环内酯生物合成基因簇的 KS 结构域形成了一个大环内酯特异性亚分支,表明大环内酯簇之间的关系比包括在分析中的大环内酯酮簇更为密切。然而,ML-449、BE-14106 和 salinilactam 基因簇的一些 KS 结构域与多烯大环内酯簇的 KS 结构域关系更为密切,表明某些 PKS 基因可能是通过获得而不是复制而来的。比较 ML-449、BE-14106、vicenistatin 和 salinilactam 生物合成基因簇表明它们之间存在进化关系,并为研究小环大环内酯生物合成的进化过程提供了新的见解。

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