Transcriptional analysis of the gene for glutamine synthetase II and two upstream genes in Streptomyces coelicolor A3(2).

N Weisschuh, D Fink, S Vierling, M J Bibb, W Wohlleben, A Engels
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引用次数: 22

Abstract

The glutamine synthetase II (GSII, encoded by glnII) activity detectable in crude extracts from Streptomyces coelicolor is low compared to the activity of glutamine synthetase I (GSI, encoded by glnA) and to that of GSII from S. viridochromogenes. We have identified and sequenced a 3.9-kb BglII-BamHI fragment carrying the glutamine synthetase II gene (glnII) from S. coelicolor. Besides glnII, this region contains four ORFs (orf1-orf4). While homologues of orf1 and orf2 were also found in the glnII region of the S. viridochromogenes chromosome, this was not the case for orf3 and orf4, which encode a putative hydrolase and a transcriptional regulator (Ptr) of the MarR family, respectively. High-resolution S1 nuclease mapping showed that the S. coelicolor glnII gene is expressed from two overlapping promoters. The first comprises a vegetative promoter sequence and the second contains sequence elements that are recognized by Esigma31. Similar promoter structures were found upstream of the S. viridochromogenes glnII gene. The involvement of ptr in glnII regulation was studied by gel retardation assays. Recombinant Ptr interacted with the upstream region of ptr, but not with the promoter region of glnII. A ptr gene replacement mutant (S. coelicolor IP) was also constructed. RT-PCR analysis of RNA from wild-type S. coelicolor and the IP mutant demonstrated that expression of orf3 depends on Ptr. Thus, the difference in gene organization between S. coelicolor and S. viridochromogenes is not responsible for the difference in GSII activity.

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colcolcolor链霉菌A3中谷氨酰胺合成酶II基因和两个上游基因的转录分析(2)。
与glnA编码的谷氨酰胺合成酶I (GSI)和病毒色链霉菌(S. viridochromogenes)的谷氨酰胺合成酶II (GSII)相比,在彩色链霉菌粗提取物中检测到的谷氨酰胺合成酶II (GSII, glnII编码)活性较低。我们已经鉴定并测序了一个3.9 kb的携带谷氨酰胺合成酶II基因(glnII)的BglII-BamHI片段。除glnII外,该区域还包含四个orf (orf1-orf4)。虽然在s.v ridochromogenes染色体glnII区域也发现了orf1和orf2的同源物,但orf3和orf4则不是这样,它们分别编码MarR家族的水解酶和转录调节因子(Ptr)。高分辨率S1核酸酶图谱显示,油菜glnII基因是由两个重叠的启动子表达的。第一个包含一个植物启动子序列,第二个包含被Esigma31识别的序列元素。在S. viridochromogenes glnII基因上游也发现了类似的启动子结构。通过凝胶阻滞实验研究了ptr在glnII调控中的作用。重组Ptr与Ptr的上游区域相互作用,但不与glnII的启动子区域相互作用。构建了一个ptr基因替代突变体(S. coelicolor IP)。RT-PCR分析野生型和IP突变体的RNA表明orf3的表达依赖于Ptr。因此,颜色葡萄球菌和病毒色葡萄球菌基因组织的差异不是GSII活性差异的原因。
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