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A LuxR family transcriptional regulator AniF promotes the production of anisomycin and its derivatives in Streptomyces hygrospinosus var. beijingensis

机译:LuxR家族的转录调节因子AniF促进潮霉素链霉菌变种中茴香霉素及其衍生物的产生。北京

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摘要

The protein synthesis inhibitor anisomycin features a unique benzylpyrrolidine system and exhibits potent selective activity against pathogenic protozoa and fungi. It is one of the important effective components in Agricultural Antibiotic120, which has been widely used as naturally-originated agents for treatment of crop decay in China. The chemical synthesis of anisomycin has recently been reported, but the complex process with low productivity made the biosynthesis still to be a vital mainstay in efforts. The biosynthetic gene cluster (BGC) of anisomycin in Streptomyces hygrospinosus var. beijingensis has been identified in our previous work, while poor understanding of the regulatory mechanism limited the yield enhancement via regulation engineering of S. hygrospinosus var. beijingensis. In this study here, we characterized AniF as an indispensable LuxR family transcriptional regulator for the activation of anisomycin biosynthesis. The genetic manipulations of aniF and the real-time quantitative PCR (RT-qPCR) revealed that it positively regulated the transcription of the anisomycin BGC. Moreover, the overexpression of aniF contributed to the improvement of the production of anisomycin and its derivatives. Dissection of the mechanism underlying the function of AniF revealed that it directly activated the transcription of the genes aniR-G involved in anisomycin biosynthesis. Especially, one AniF-binding site in the promoter region of aniR was identified by DNase I footprinting assay and an inverted repeat sequence (5′-GGGC-3′) composed of two 4-nt half sites in the protected region was found. Taken together, our systematic study confirmed the positive regulatory role of AniF and might facilitate the future construction of engineering strains with high productivity of anisomycin and its derivatives.
机译:蛋白质合成抑制剂茴香霉素具有独特的苄基吡咯烷系统,对致病性原生动物和真菌具有强大的选择性活性。它是农业抗生素120中重要的有效成分之一,在中国已广泛用作天然来源的药物,用于治疗农作物腐烂。最近报道了茴香霉素的化学合成,但是复杂的过程和低生产率使生物合成仍然是努力的重要支柱。潮链霉菌中茴香霉素的生物合成基因簇(BGC)。在我们以前的工作中已经确定了北京,而对调节机制的了解不足限制了通过S. hygrospinosus var的调节工程提高产量。北京在这里的这项研究中,我们将AniF表征为激活茴香霉素生物合成所必需的LuxR家族转录调节因子。 aniF的基因操作和实时定量PCR(RT-qPCR)表明,它正调控Anisomycin BGC的转录。此外,aniF的过表达有助于改善茴香霉素及其衍生物的生产。对AniF功能的基本机制的剖析表明,它直接激活了涉及茴香霉素生物合成的aniR-G基因的转录。特别地,通过DNase I足迹测定法鉴定出aniR的启动子区域中的一个AniF结合位点,并且在保护区域中发现了由两个4-nt半位点组成的反向重复序列(5'-GGGC-3')。综上所述,我们的系统研究证实了AniF的积极调节作用,并可能促进将来具有茴香霉素及其衍生物高生产率的工程菌株的构建。

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