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Identification and Analysis of the Balhimycin Biosynthetic Gene Cluster and Its Use for Manipulating Glycopeptide Biosynthesis in Amycolatopsis mediterranei DSM5908

机译:Balhimycin生物合成基因簇的鉴定和分析及其在糖酵素DSM5908中操纵糖肽生物合成的应用

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摘要

Seven complete genes and one incomplete gene for the biosynthesis of the glycopeptide antibiotic balhimycin were isolated from the producer, Amycolatopsis mediterranei DSM5908, by a reverse-cloning approach and characterized. Using oligonucleotides derived from glycosyltransferase sequences, a 900-bp glycosyltransferase gene fragment was amplified and used to identify a DNA fragment of 9,882 bp. Of the identified open reading frames, three (oxyA to -C) showed significant sequence similarities to cytochrome P450 monooxygenases and one (bhaA) showed similarities to halogenase, and the genes bgtfA to -C showed similarities to glycosyltransferases. Glycopeptide biosynthetic mutants were created by gene inactivation experiments eliminating oxygenase and glycosyltransferase functions. Inactivation of the oxygenase gene(s) resulted in a balhimycin mutant (SP1-1) which was not able to synthesize an antibiotically active compound. Structural analysis by high-performance liquid chromatography–mass spectrometry, fragmentation studies, and amino acid analysis demonstrated that these oxygenases are involved in the coupling of the aromatic side chains of the unusual heptapeptide. Mutant strain HD1, created by inactivation of the glycosyltransferase gene bgtfB, produced at least four different compounds which were not glycosylated but still antibiotically active.
机译:通过反向克隆方法,从生产者地中海扁桃菌DSM5908中分离了糖肽类抗生素波希霉素生物合成的七个完整基因和一个不完整基因。使用衍生自糖基转移酶序列的寡核苷酸,扩增了900 bp的糖基转移酶基因片段,并用于鉴定9,882 bp的DNA片段。在确定的开放阅读框中,三个(oxyA到-C)显示出与细胞色素P450单加氧酶的显着序列相似性,一个(bhaA)显示出与卤化酶的相似性,而bgtfA到-C基因显示出与糖基转移酶的相似性。通过基因灭活实验创建糖肽生物合成突变体,消除了氧化酶和糖基转移酶的功能。加氧酶基因的失活导致不能合成抗生素活性化合物的Balhimycin突变体(SP1-1)。通过高效液相色谱-质谱,断裂研究和氨基酸分析进行的结构分析表明,这些加氧酶与异常的七肽芳香侧链的偶联有关。通过使糖基转移酶基因bgtfB失活产生的突变株HD1产生了至少四种不同的化合物,这些化合物没有糖基化但仍具有抗生素活性。

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