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Dissolution of the Disparate: Co-ordinate Regulation in Antibiotic Biosynthesis

机译:不同的溶解:抗生素生物合成中的坐标调节

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Discovering new antibiotics is vital to combat the growing threat of antimicrobial resistance. Most currently used antibiotics originate from the natural products of actinomycete bacteria, particularly Streptomyces species, that were discovered over 60 years ago. However, genome sequencing has revealed that most antibiotic-producing microorganisms encode many more natural products than previously thought. Biosynthesis of these natural products is tightly regulated by global and cluster situated regulators (CSRs), most of which respond to unknown environmental stimuli, and this likely explains why many biosynthetic gene clusters (BGCs) are not expressed under laboratory conditions. One approach towards novel natural product discovery is to awaken these cryptic BGCs by re-wiring the regulatory control mechanism(s). Most CSRs bind intergenic regions of DNA in their own BGC to control compound biosynthesis, but some CSRs can control the biosynthesis of multiple natural products by binding to several different BGCs. These cross-cluster regulators present an opportunity for natural product discovery, as the expression of multiple BGCs can be affected through the manipulation of a single regulator. This review describes examples of these different mechanisms, including specific examples of cross-cluster regulation, and assesses the impact that this knowledge may have on the discovery of novel natural products.
机译:发现新的抗生素对于对抗抗微生物抗性的不断增长的威胁至关重要。最目前使用的抗生素来自60多年前发现的放线菌细菌,特别是链霉菌的物种的天然产物。然而,基因组测序揭示了大多数抗生素的微生物编码了比以前认为更多的天然产物。这些天然产物的生物合成受全球和集群定位调节因子(CSR)紧密调节,其中大多数是对未知的环境刺激作出反应,这可能解释了为什么在实验室条件下没有表达许多生物合成基因簇(BGC)。新颖的天然产品发现的一种方法是通过重新布线监管控制机制来唤醒这些隐秘的BGC。大多数CSRS在自己的BGC中染成DNA的基因状区域以控制化合物生物合成,但是一些CSR可以通过与几种不同的BGC结合来控制多种天然产物的生物合成。这些交叉簇监管机构为天然产品发现提供了机会,因为多个BGC的表达可以通过操纵单个调节器来影响。该综述描述了这些不同机制的示例,包括交叉簇调节的具体例子,并评估了这种知识可能对新型天然产品的发现的影响。

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