首页> 美国卫生研究院文献>Journal of Bacteriology >Characterization of a New GlnR Binding Box in the Promoter of amtB in Streptomyces coelicolor Inferred a PhoP/GlnR Competitive Binding Mechanism for Transcriptional Regulation of amtB
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Characterization of a New GlnR Binding Box in the Promoter of amtB in Streptomyces coelicolor Inferred a PhoP/GlnR Competitive Binding Mechanism for Transcriptional Regulation of amtB

机译:在天蓝色链霉菌amtB启动子中新的GlnR结合盒的表征推断了转录调节amtB的PhoP / GlnR竞争性结合机制。

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摘要

The transcription of amtB in Streptomyces coelicolor has been proposed to be counter-regulated by GlnR (a global regulator for nitrogen metabolism) and PhoP (a global regulator for phosphate metabolism). However, the GlnR-protected region, which was deduced to be two 22-bp GlnR binding boxes (gTnAc-n6-GaAAc-n6-GtnAC-n6-GAAAc-n6, abbreviated as a1-b1 and a2-b2), was separated from the PhoP-protected region in the promoter of amtB, leaving the mechanism for this regulation undefined. In this study, another 22-bp GlnR binding box, which consisted of a3-site-n6-b3-site (a3-b3) overlapping with the PhoP-binding sequences, was identified in the promoter region of amtB by a DNase I footprinting assay. An electrophoretic mobility shift assay (EMSA) using purified recombinant GlnR and the synthetic amtB promoter fragments with the three GlnR binding boxes individually mutated demonstrated that every box was involved in GlnR binding in vitro. Further in vivo assays using the egfp reporter gene fused to various kinds of mutated promoter regions of amtB demonstrated that all of the three GlnR binding boxes were required for GlnR-mediated activation of amtB transcription under the nitrogen-limited condition. The results of EMSA using the amtB promoter with mixtures of recombinant His-tagged GlnR and Trx-His-S-tagged PhoP inferred that PhoP might compete against GlnR from binding at the a3-b3 site, attributable to the PhoP/GlnR counter-regulatory function subjected to further experimental proof.
机译:有人提议用GlnR(氮代谢的全球调节剂)和PhoP(磷代谢的全球调节剂)来反调控腔肠链霉菌中amtB的转录。但是,GlnR保护区被推导为两个22 bp GlnR结合盒(gTnAc-n6-GaAAc-n6-GtnAC-n6-GAAAc-n6,分别缩写为a1-b1和a2-b2)被分离。从amtB启动子中的PhoP保护区中分离出来,使得该调节的机制尚不清楚。在这项研究中,通过DNase I印迹在amtB的启动子区域鉴定出另一个22 bp的GlnR结合盒,该盒由与PhoP结合序列重叠的a3-位-n6-b3-位(a3-b3)组成分析。使用纯化的重组GlnR和具有三个分别独立突变的三个GlnR结合盒的合成amtB启动子片段进行的电泳迁移率迁移分析(EMSA)表明,每个盒都在体外参与了GlnR结合。使用egfp报告基因融合到amtB的各种突变启动子区域的进一步体内分析表明,在氮有限的条件下,所有三个GlnR结合盒都是GlnR介导的amtB转录激活所必需的。使用amtB启动子与重组His标记的GlnR和Trx-His-S标记的PhoP的混合物的EMSA结果表明,PhoP可能与GlnR竞争 a3-b3 位点的结合,这归因于PhoP / GlnR的反调节功能受到进一步的实验证明。

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