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Biosynthesis of antibiotic chuangxinmycin from Actinoplanes tsinanensis

机译:中华猕猴桃生物创新抗菌素的生物合成

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摘要

Chuangxinmycin is an antibiotic isolated from Actinoplanes tsinanensis CPCC 200056 in the 1970s with a novel indole-dihydrothiopyran heterocyclic skeleton. Chuangxinmycin showed in vitro antibacterial activity and in vivo efficacy in mouse infection models as well as preliminary clinical trials. But the biosynthetic pathway of chuangxinmycin has been obscure since its discovery. Herein, we report the identification of a stretch of DNA from the genome of A. tsinanensis CPCC 200056 that encodes genes for biosynthesis of chuangxinmycin by bioinformatics analysis. The designated cxn cluster was then confirmed to be responsible for chuangxinmycin biosynthesis by direct cloning and heterologous expressing in Streptomyces coelicolor M1146. The cytochrome P450 CxnD was verified to be involved in the dihydrothiopyran ring closure reaction by the identification of seco-chuangxinmycin in S. coelicolor M1146 harboring the cxn gene cluster with an inactivated cxnD. Based on these results, a plausible biosynthetic pathway for chuangxinmycin biosynthesis was proposed, by hijacking the primary sulfur transfer system for sulfur incorporation. The identification of the biosynthetic gene cluster of chuangxinmycin paves the way for elucidating the detail biochemical machinery for chuangxinmycin biosynthesis, and provides the basis for the generation of novel chuangxinmycin derivatives by means of combinatorial biosynthesis and synthetic biology.
机译:创霉素是一种在1970年代从中华猕猴桃CPCC 200056中分离的抗生素,具有新颖的吲哚-二氢噻喃杂环骨架。创霉素在小鼠感染模型和初步临床试验中均显示出体外抗菌活性和体内功效。但是,创新霉素的发现以来,其生物合成途径一直是晦涩的。本文中,我们报告了通过生物信息学分析从中华曲霉CPCC 200056的基因组中鉴定出一段DNA的信息,该基因编码了创新霉素的生物合成基因。然后,通过直接克隆和异色表达在天蓝色链霉菌M1146中证实了指定的cxn簇负责创新霉素的生物合成。细胞色素P450 CxnD通过在带有灭活cxnD的带有cxn基因簇的天蓝色链霉菌M1146中鉴定seco-huangxinmycin,证实参与了二氢噻喃环闭合反应。基于这些结果,通过劫持硫掺入的主要硫转移系统,提出了一种创新的生物合成途径。创鑫霉素生物合成基因簇的鉴定为阐明创鑫霉素生物合成的详细生化机制铺平了道路,并为通过组合生物合成和合成生物学方法产生新型创鑫霉素衍生物提供了基础。

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