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Genome-wide analysis of the role of GlnR in Streptomyces venezuelae provides new insights into global nitrogen regulation in actinomycetes

机译:GlnR在委内链霉菌中的作用的全基因组分析为放线菌中的全球氮调控提供了新见解

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摘要

BackgroundGlnR is an atypical response regulator found in actinomycetes that modulates the transcription of genes in response to changes in nitrogen availability. We applied a global in vivo approach to identify the GlnR regulon of Streptomyces venezuelae, which, unlike many actinomycetes, grows in a diffuse manner that is suitable for physiological studies. Conditions were defined that facilitated analysis of GlnR-dependent induction of gene expression in response to rapid nitrogen starvation. Microarray analysis identified global transcriptional differences between glnR+ and glnR mutant strains under varying nitrogen conditions. To differentiate between direct and indirect regulatory effects of GlnR, chromatin immuno-precipitation (ChIP) using antibodies specific to a FLAG-tagged GlnR protein, coupled with microarray analysis (ChIP-chip), was used to identify GlnR binding sites throughout the S. venezuelae genome.
机译:BackgroundGlnR是一种在放线菌中发现的非典型反应调节剂,可响应氮利用量的变化来调节基因的转录。我们应用了一种全球体内方法来鉴定委内瑞斯链霉菌的GlnR调节子,与许多放线菌不同,它以适合生理学研究的分散方式生长。确定了有助于分析响应快速氮饥饿的GlnR依赖性基因表达诱导的条件。基因芯片分析确定了在不同氮条件下glnR + 和glnR突变菌株之间的全局转录差异。为了区分GlnR的直接和间接调节作用,使用对FLAG标签的GlnR蛋白特异的抗体的染色质免疫沉淀(ChIP),结合微阵列分析(ChIP芯片),用于鉴定整个S的GlnR结合位点。委内瑞拉基因组。

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