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Genome-Wide Analysis of In Vivo Binding of the Master Regulator DasR in Streptomyces coelicolor Identifies Novel Non-Canonical Targets

机译:整个过程中天蓝色链霉菌中的主调控因子DasR的体内结合的基因组分析确定了新的非典型靶标。

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摘要

Streptomycetes produce a wealth of natural products, including over half of all known antibiotics. It was previously demonstrated that N-acetylglucosamine and secondary metabolism are closely entwined in streptomycetes. Here we show that DNA recognition by the N-acetylglucosamine-responsive regulator DasR is growth-phase dependent, and that DasR can bind to sites in the S. coelicolor genome that have no obvious resemblance to previously identified DasR-responsive elements. Thus, the regulon of DasR extends well beyond what was previously predicted and includes a large number of genes with functions far removed from N-acetylglucosamine metabolism, such as genes for small RNAs and DNA transposases. Conversely, the DasR regulon during vegetative growth largely correlates to the presence of canonical DasR-responsive elements. The changes in DasR binding in vivo following N-acetylglucosamine induction were studied in detail and a possible molecular mechanism by which the influence of DasR is extended is discussed. Discussion of DasR binding was further informed by a parallel transcriptome analysis of the respective cultures. Evidence is provided that DasR binds directly to the promoters of all genes encoding pathway-specific regulators of antibiotic production in S. coelicolor, thereby providing an exquisitely simple link between nutritional control and secondary metabolism.
机译:链霉菌产生大量天然产物,包括所有已知抗生素的一半以上。先前已证明,N-乙酰氨基葡萄糖和次级代谢在链霉菌中紧密缠绕在一起。在这里,我们显示N-乙酰氨基葡萄糖响应调节剂DasR的DNA识别是生长阶段依赖性的,并且DasR可以结合到天蓝色链霉菌基因组中与以前确定的DasR反应元件没有明显相似的位点。因此,DasR的调控范围远远超出了先前的预测范围,并且包含大量具有远离N-乙酰氨基葡萄糖代谢功能的基因,例如小RNA和DNA转座酶的基因。相反,营养生长期间的DasR调节子与经典的DasR响应元件的存在密切相关。详细研究了N-乙酰氨基葡糖诱导后体内DasR结合的变化,并讨论了可能的分子机理,通过该分子机理可以扩大DasR的影响。通过对相应培养物进行平行转录组分析进一步讨论了DasR结合。提供的证据是,DasR直接与编码天蓝色链霉菌中抗生素生产的途径特异性调节剂的所有基因的启动子直接结合,从而在营养控制和次级代谢之间提供了非常简单的联系。

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