首页> 美国卫生研究院文献>Journal of Bacteriology >Characterization of the Saframycin A Gene Cluster from Streptomyces lavendulae NRRL 11002 Revealing a Nonribosomal Peptide Synthetase System for Assembling the Unusual Tetrapeptidyl Skeleton in an Iterative Manner
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Characterization of the Saframycin A Gene Cluster from Streptomyces lavendulae NRRL 11002 Revealing a Nonribosomal Peptide Synthetase System for Assembling the Unusual Tetrapeptidyl Skeleton in an Iterative Manner

机译:淡紫色链霉菌NRRL 11002的Saframycin A基因簇的表征揭示了一种非核糖体肽合成酶系统用于以迭代方式组装异常的四肽骨架。

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摘要

Saframycin A (SFM-A), produced by Streptomyces lavendulae NRRL 11002, belongs to the tetrahydroisoquinoline family of antibiotics, and its core is structurally similar to the core of ecteinascidin 743, which is a highly potent antitumor drug isolated from a marine tunicate. In this study, the biosynthetic gene cluster for SFM-A was cloned and localized to a 62-kb contiguous DNA region. Sequence analysis revealed 30 genes that constitute the SFM-A gene cluster, encoding an unusual nonribosomal peptide synthetase (NRPS) system and tailoring enzymes and regulatory and resistance proteins. The results of substrate prediction and in vitro characterization of the adenylation specificities of this NRPS system support the hypothesis that the last module acts in an iterative manner to form a tetrapeptidyl intermediate and that the colinearity rule does not apply. Although this mechanism is different from those proposed for the SFM-A analogs SFM-Mx1 and safracin B (SAC-B), based on the high similarity of these systems, it is likely they share a common mechanism of biosynthesis as we describe here. Construction of the biosynthetic pathway of SFM-Y3, an aminated SFM-A, was achieved in the SAC-B producer (Pseudomonas fluorescens). These findings not only shed new insight on tetrahydroisoquinoline biosynthesis but also demonstrate the feasibility of engineering microorganisms to generate structurally more complex and biologically more active analogs by combinatorial biosynthesis.
机译:薰衣草链霉菌NRRL 11002生产的Saframycin A(SFM-A)属于四氢异喹啉类抗生素家族,其核心在结构上类似于ecteinascidin 743的核心,后者是一种从海洋被膜中分离得到的高效抗肿瘤药物。在这项研究中,SFM-A的生物合成基因簇被克隆并定位到一个62kb的连续DNA区域。序列分析揭示了构成SFM-A基因簇的30个基因,它们编码一个不寻常的非核糖体肽合成酶(NRPS)系统,并定制酶,调节蛋白和抗性蛋白。该NRPS系统的底物预测结果和腺苷酸特异性的体外表征结果支持以下假设:最后一个模块以迭代方式起作用以形成四肽基中间体,并且共线性规则不适用。尽管此机制与针对SFM-A类似物SFM-Mx1和safracin B(SAC-B)提出的机制不同,但基于这些系统的高度相似性,它们可能具有我们在此描述的生物合成的共同机制。在SAC-B生产者(荧光假单胞菌)中实现了胺化SFM-A SFM-Y3的生物合成途径的构建。这些发现不仅为四氢异喹啉生物合成提供了新的见识,而且还证明了工程微生物通过组合生物合成产生结构上更复杂,生物学活性更高的类似物的可行性。

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