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Antibiotic Resistance Mechanisms Inform Discovery: Identification and Characterization of a Novel Amycolatopsis Strain Producing Ristocetin

机译:抗生素抗性机制通知发现:鉴定和表征新型的扁桃体菌株生产力斯托菌素。

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摘要

Discovering new antibiotics is a major scientific challenge, made increasingly urgent by the continued development of resistance in bacterial pathogens. A fundamental understanding of the mechanisms of bacterial antibiotic resistance will be vital for the future discovery or design of new, more effective antibiotics. We have exploited our intimate knowledge of the molecular mechanism of glycopeptide antibiotic resistance in the harmless bacterium Streptomyces coelicolor to develop a new two-step cell wall bioactivity screen, which efficiently identified a new actinomycete strain containing a previously uncharacterized glycopeptide biosynthetic gene cluster. The screen first identifies natural product extracts capable of triggering a generalized cell wall stress response and then specifically selects for glycopeptide antibacterials by assaying for the induction of glycopeptide resistance genes. In this study, we established a diverse natural product extract library from actinomycete strains isolated from locations with widely varying climates and ecologies, and we screened them using the novel two-step bioassay system. The bioassay ultimately identified a single strain harboring the previously unidentified biosynthetic gene cluster for the glycopeptide ristocetin, providing a proof of principle for the effectiveness of the screen. This is the first report of the ristocetin biosynthetic gene cluster, which is predicted to include some interesting and previously uncharacterized enzymes. By focusing on screening libraries of microbial extracts, this strategy provides the certainty that identified producer strains are competent for growth and biosynthesis of the detected glycopeptide under laboratory conditions.
机译:发现新的抗生素是一项重大的科学挑战,细菌病原体耐药性的不断发展使这一问题变得越来越紧迫。对细菌耐药性机制的基本了解对于将来发现或设计新的,更有效的抗生素至关重要。我们已经利用对无害细菌链霉链霉菌中糖肽抗生素耐药性分子机制的深入了解来开发新的两步细胞壁生物活性筛选,可有效鉴定出一种新的放线菌菌株,该菌株包含以前未表征的糖肽生物合成基因簇。该筛查首先鉴定出能够触发普遍的细胞壁应激反应的天然产物提取物,然后通过测定糖肽抗性基因的诱导特异性选择糖肽抗菌剂。在这项研究中,我们建立了一个从放线菌菌株中分离的天然产物提取物文库,这些菌株是从气候和生态变化很大的地方分离出来的,我们使用新颖的两步生物测定系统对其进行了筛选。该生物测定法最终鉴定出一个单一菌株,该菌株带有糖肽瑞斯托菌素的先前未鉴定的生物合成基因簇,为筛选的有效性提供了原理证明。这是瑞斯托菌素生物合成基因簇的第一个报道,预测该簇包括一些有趣的且以前未鉴定的酶。通过专注于筛选微生物提取物的文库,该策略提供了确定的生产菌株能够在实验室条件下胜任检测糖肽的生长和生物合成的确定性。

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