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首页> 外文期刊>Molecular Microbiology >BldD, a master developmental repressor, activates antibiotic production in two Streptomyces Streptomyces species
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BldD, a master developmental repressor, activates antibiotic production in two Streptomyces Streptomyces species

机译:BLDD是一位母系发育阻遏物,在两种链霉菌霉菌物种中激活抗生素生产

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摘要

Summary BldD generally functions as a repressor controlling morphological development of Streptomyces . In this work, evidences that BldD also activates antibiotic production are provided. In Streptomyces roseosporus (which produces daptomycin widely used for treatment of human infections), deletion of bldD notably reduced daptomycin production, but enhanced sporulation. BldD stimulated daptomycin production by directly activating transcription of dpt structural genes and dptR3 (which encodes an indirect activator of daptomycin production), and repressed its own gene. BldD‐binding sites on promoter regions of dptE , dptR3 , and bldD were all found to contain BldD box‐like sequences, facilitating prediction of new BldD targets. Two Streptomyces global regulatory genes, adpA and afsR , were confirmed to be directly activated by BldD. The protein AfsR was shown to act as an activator of daptomycin production, but a repressor of development. BldD directly represses nine key developmental genes. In Streptomyces avermitilis (which produces effective anthelmintic agents avermectins), BldD homolog (BldDsav) directly activates avermectin production through ave structural genes and cluster‐situated activator gene aveR . This is the first report that BldD activates antibiotic biosynthesis both directly and via a cascade mechanism. BldD homologs are widely distributed among Streptomyces , our findings suggest that BldD may activate antibiotic production in other Streptomyces species.
机译:摘要通常BLDD用作阻遏控制链霉菌形态发育。在这项工作中,证据表明BLDD也激活提供抗生素生产。在链霉菌中玫瑰孢链霉菌(其产生达托霉素广泛地用于治疗人类感染的),BLDD的缺失显着降低达托霉素生产,但增强孢子形成。 BLDD刺激达托霉素生产通过直接激活的DPT结构基因和dptR3(其编码达托霉素生产的间接活化)转录,并抑制其自身的基因。 BLDD结合上dptE,dptR3和BLDD的启动子区域部位均发现含有BLDD盒样序列,促进新BLDD目标预测。两链的全球调控基因,ADPA和AFSR,被证实由BLDD直接激活。蛋白质AFSR显示出作为达托霉素生产的活化剂,但发展的阻遏。 BLDD直接压制九大重点发展基因。在阿维链霉菌(其产生有效的驱虫剂除虫菌素),BLDD同系物(BldDsav)直接激活通过AVE结构基因和簇位于活化剂基因aveR的除虫菌素的生产。这是首次报道BLDD直接或通过级联机制启动抗生素的生物合成。 BLDD同系物之间的链霉菌广泛分布,我们的研究结果表明,BLDD可激活的抗生素生产其它链霉菌。

著录项

  • 来源
    《Molecular Microbiology》 |2020年第1期|共19页
  • 作者单位

    State Key Laboratory of Agrobiotechnology and College of Biological SciencesChina Agricultural;

    State Key Laboratory of Agrobiotechnology and College of Biological SciencesChina Agricultural;

    School of Life SciencesJiangsu Normal UniversityXuzhou China;

    State Key Laboratory of Agrobiotechnology and College of Biological SciencesChina Agricultural;

    State Key Laboratory of Agrobiotechnology and College of Biological SciencesChina Agricultural;

    State Key Laboratory of Agrobiotechnology and College of Biological SciencesChina Agricultural;

    State Key Laboratory of Agrobiotechnology and College of Biological SciencesChina Agricultural;

    State Key Laboratory of Agrobiotechnology and College of Biological SciencesChina Agricultural;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

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