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首页> 外文期刊>ACS Chemical Biology >Discovery of the Showdomycin Gene Cluster from Streptomyces showdoensis ATCC 15227 Yields Insight into the Biosynthetic Logic of C-Nucleoside Antibiotics
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Discovery of the Showdomycin Gene Cluster from Streptomyces showdoensis ATCC 15227 Yields Insight into the Biosynthetic Logic of C-Nucleoside Antibiotics

机译:从Streptomyces Showdoensis ATCC 15227发现脑霉素基因簇的发现产生了对C-核苷抗生素的生物合成逻辑的洞察力

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摘要

Nucleoside antibiotics are a large class of pharmaceutically relevant chemical entities, which exhibit a broad spectrum of biological activities. Most nucleosides belong to the canonical N-nucleoside family, where the heterocyclic unit is connected to the carbohydrate through a carbonnitrogen bond. However, atypical C-nucleosides were isolated from Streptomyces bacteria over 50 years ago, but the molecular basis for formation of these metabolites has been unknown. Here, we have sequenced the genome of S. showdoensis ATCC 15227 and identified the gene cluster responsible for showdomycin production. Key to the detection was the presence of sdmA, encoding an enzyme of the pseudouridine monophosphate glycosidase family, which could catalyze formation of the C-glycosidic bond. Sequence analysis revealed an unusual combination of biosynthetic genes, while inactivation and subsequent complementation of sdmA confirmed the involvement of the locus in showdomycin formation. The study provides the first steps toward generation of novel C-nucleosides by pathway engineering.
机译:核苷抗生素是一类大类药学相关化学实体,其表现出广谱的生物活性。大多数核苷属于典型的N-核苷家族,其中杂环单元通过碳氮键连接到碳水化合物。然而,在50年前的菌从链霉菌细菌中分离出非典型的C-核苷,但是将这些代谢物形成的分子基础已经未知。这里,我们已经测量了S. Showdoensis ATCC 15227的基因组,并确定了负责序列霉素产生的基因簇。检测的关键是存在SDMA,编码伪氨基磷酸糖苷酶系列的酶,其可以催化形成C-糖苷键。序列分析显示了生物合成基因的不寻常组合,而灭活和随后的SDMA的互补证实了轨迹在展表中形成的涉及。该研究提供了通过途径工程产生新型C-核苷的第一步。

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