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Development of a Genetic System for Combinatorial Biosynthesis of Lipopeptides in Streptomyces fradiae and Heterologous Expression of the A54145 Biosynthesis Gene Cluster

机译:在链霉菌中脂肽的组合生物合成和A54145生物合成基因簇的异源表达遗传系统的开发

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A54145 factors are calcium-dependent lipopeptide antibiotics produced by Streptomyces fradiae NRRL 18160. A54145 is structurally related to the clinically important daptomycin, and as such may be a useful scaffold for the development of a novel lipopeptide antibiotic. We developed methods to genetically manipulate S. fradiae by deletion mutagenesis and conjugal transfer of plasmids from Escherichia coli . Cloning the complete pathway on a bacterial artificial chromosome (BAC) vector and the construction of ectopic trans -complementation with plasmids utilizing the φC31 or φBT1 site-specific integration system allowed manipulation of A54145 biosynthesis. The BAC clone pDA2002 was shown to harbor the complete A54145 biosynthesis gene cluster by heterologous expression in Streptomyces ambofaciens and Streptomyces roseosporus strains in yields of >100 mg/liter. S. fradiae mutants defective in LptI methyltransferase function were constructed, and they produced only A54145 factors containing glutamic acid (Glu_(12)), at the expense of factors containing 3-methyl-glutamic acid (3mGlu_(12)). This provided a practical route to produce high levels of pure Glu_(12)-containing lipopeptides. A suite of mutant strains and plasmids was created for combinatorial biosynthesis efforts focused on modifying the A54145 peptide backbone to generate a compound with daptomycin antibacterial activity and activity in Streptococcus pneumoniae pulmonary infections.
机译:A54145因子是由链霉菌NRRL 18160生产的钙依赖性脂肽抗生素。A54145在结构上与临床上重要的达托霉素相关,因此可能是开发新型脂肽抗生素的有用支架。我们开发了通过缺失诱变和从大肠杆菌质粒的结合转移来遗传控制弗拉氏酵母的方法。在细菌人工染色体(BAC)载体上克隆完整的途径,并利用φC31或φBT1位点特异性整合系统,通过质粒构建异位反式互补,可以操纵A54145的生物合成。通过在竹链霉菌和玫瑰链霉菌菌株中异源表达,BAC克隆pDA2002具有完整的A54145生物合成基因簇,产量> 100 mg / L。构造了在LptI甲基转移酶功能上有缺陷的S.fradiae突变体,它们仅产生了含有谷氨酸的A54145因子(Glu_(12)),而损失了含有3-甲基谷氨酸的因子(3mGlu_(12))。这提供了生产高水平的纯Glu_(12)脂肽的实用途径。创建了一套突变菌株和质粒用于组合生物合成,其工作重点是修饰A54145肽骨架,以产生具有达托霉素抗菌活性和肺炎链球菌肺部感染活性的化合物。

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