首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Assembling the glycopeptide antibiotic scaffold: The biosynthesis of from Streptomyces toyocaensis NRRL15009
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Assembling the glycopeptide antibiotic scaffold: The biosynthesis of from Streptomyces toyocaensis NRRL15009

机译:组装糖肽抗生素支架:丰田链霉菌NRRL15009的生物合成

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摘要

The glycopeptide antibiotics vancomycin and teicoplanin are vital components of modern anti-infective chemotherapy exhibiting outstanding activity against Gram-positive pathogens including members of the genera Streptococcus, Staphylococcus, and Enterococcus. These antibiotics also provide fascinating examples of the chemical and associated biosynthetic complexity exploitable in the synthesis of natural products by actinomycetes group of bacteria. We report the sequencing and annotation of the biosynthetic gene cluster for the glycopeptide antibiotic from Streptomyces toyocaensis NRRL15009, the first complete sequence for a teicoplanin class glycopeptide. The cluster includes 34 ORFs encompassing 68 kb and includes all of the genes predicted to be required to synthesize and regulate its biosynthesis. The gene cluster also contains ORFs encoding enzymes responsible for glycopeptide resistance. This role was confirmed by insertional inactivation of the d-Ala-d-lactate ligase, vanAst, which resulted in the predicted -sensitive phenotype and impaired antibiotic biosynthesis. These results provide increased understanding of the biosynthesis of these complex natural products.
机译:糖肽抗生素万古霉素和替考拉宁是现代抗感染化学疗法的重要组成部分,对革兰氏阳性病原体(包括链球菌,葡萄球菌和肠球菌属)具有出色的活性。这些抗生素还提供了令人着迷的化学和相关生物合成复杂性的例子,这些化学和相关生物合成复杂性可通过细菌的放线菌类群合成天然产物。我们报告测序和注释的链霉菌NRRL15009,teicoplanin类糖肽的第一个完整序列的糖肽类抗生素的生物合成基因簇。该簇包括34个ORF,涵盖68 kb,并且包括所有预测合成和调节其生物合成所需的基因。基因簇还含有编码负责糖肽抗性的酶的ORF。 d-Ala-d-乳酸连接酶vanAst的插入失活证实了这一作用,这导致了预期的敏感表型和抗生素生物合成受损。这些结果使人们对这些复杂的天然产物的生物合成有了更深入的了解。

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