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PCR 筛选揭示了放线菌中未被充分利用的 ansamycin 生物合成潜力和一类神秘的 AHBA 含天然产物家族。

PCR screening reveals considerable unexploited biosynthetic potential of ansamycins and a mysterious family of AHBA-containing natural products in actinomycetes.

机构信息

State Key Laboratory of Microbial Technology, School of Life Sciences, Shandong University, Jinan, China.

出版信息

J Appl Microbiol. 2013 Jul;115(1):77-85. doi: 10.1111/jam.12217. Epub 2013 May 15.

Abstract

AIMS

Ansamycins are a family of macrolactams that are synthesized by type I polyketide synthase (PKS) using 3-amino-5-hydroxybenzoic acid (AHBA) as the starter unit. Most members of the family have strong antimicrobial, antifungal, anticancer and/or antiviral activities. We aimed to discover new ansamycins and/or other AHBA-containing natural products from actinobacteria.

METHODS AND RESULTS

Through PCR screening of AHBA synthase gene, we identified 26 AHBA synthase gene-positive strains from 206 plant-associated actinomycetes (five positives) and 688 marine-derived actinomycetes (21 positives), representing a positive ratio of 2·4-3·1%. Twenty-five ansamycins, including eight new compounds, were isolated from six AHBA synthase gene-positive strains through TLC-guided fractionations followed by repeated column chromatography. To gain information about those potential ansamycin gene clusters whose products were unknown, seven strains with phylogenetically divergent AHBA synthase genes were subjected to fosmid library construction. Of the seven gene clusters we obtained, three show characteristics for typical ansamycin gene clusters, and other four, from Micromonospora spp., appear to lack the amide synthase gene, which is unusual for ansamycin biosynthesis. The gene composition of these four gene clusters suggests that they are involved in the biosynthesis of a new family of hybrid PK-NRP compounds containing AHBA substructure.

CONCLUSIONS

PCR screening of AHBA synthase is an efficient approach to discover novel ansamycins and other AHBA-containing natural products.

SIGNIFICANCE AND IMPACT OF THE STUDY

This work demonstrates that the AHBA-based screening method is a useful approach for discovering novel ansamycins and other AHBA-containing natural products from new microbial resources.

摘要

目的

安沙霉素是一类由 I 型聚酮合酶(PKS)利用 3-氨基-5-羟基苯甲酸(AHBA)作为起始单元合成的大环内酯类化合物。该家族的大多数成员具有很强的抗菌、抗真菌、抗癌和/或抗病毒活性。我们旨在从放线菌中发现新的安沙霉素和/或其他含有 AHBA 的天然产物。

方法和结果

通过 AHBA 合酶基因的 PCR 筛选,我们从 206 株植物源放线菌(5 株阳性)和 688 株海洋来源放线菌(21 株阳性)中鉴定出 26 株 AHBA 合酶基因阳性菌株,阳性率为 2.4-3.1%。通过 TLC 引导的分步分离和反复柱层析,从 6 株 AHBA 合酶基因阳性菌株中分离出 25 种安沙霉素,包括 8 种新化合物。为了获得那些产物未知的潜在安沙霉素基因簇的信息,我们对 7 株具有系统发育上不同的 AHBA 合酶基因的菌株进行了 fosmid 文库构建。在所获得的 7 个基因簇中,有 3 个具有典型安沙霉素基因簇的特征,而来自 Micromonospora spp.的另外 4 个基因簇似乎缺乏酰胺合酶基因,这在安沙霉素生物合成中是不寻常的。这四个基因簇的基因组成表明它们参与了一种新型的含有 AHBA 亚结构的混合 PK-NRP 化合物的生物合成。

结论

AHBA 合酶的 PCR 筛选是发现新型安沙霉素和其他含有 AHBA 的天然产物的有效方法。

研究的意义和影响

这项工作表明,基于 AHBA 的筛选方法是从新的微生物资源中发现新型安沙霉素和其他含有 AHBA 的天然产物的有用方法。

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