首页> 外文OA文献 >Transcription of glutamine synthetase genes (glnA and glnN) from the cyanobacterium Synechocystis sp. strain PCC 6803 is differently regulated in response to nitrogen availability
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Transcription of glutamine synthetase genes (glnA and glnN) from the cyanobacterium Synechocystis sp. strain PCC 6803 is differently regulated in response to nitrogen availability

机译:从蓝藻Synechocystis sp。的谷氨酰胺合成酶基因(glnA和glnN)的转录。 PCC 6803菌株对氮的有效性有不同的调控

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摘要

In the cyanobacterium Synechocystis sp. strain PCC 6803 we have previously reported the presence of two different proteins with glutamine synthetase activity: GSI, encoded by the glnA gene, and GSIII, encoded by the glnN gene. In this work we show that expression of both the glnA and glnN genes is subjected to transcriptional regulation in response to changes in nitrogen availability. Northern blot experiments and transcriptional fusions demonstrated that the glnA gene is highly transcribed in nitrate- or ammonium-grown cells and exhibits two- to fourfold-higher expression in nitrogen-starved cells. In contrast, the glnN gene is highly expressed only under nitrogen deficiency. Half-lives of both mRNAs, calculated after addition of rifampin or ammonium to nitrogen-starved cells, were not significantly different (2.5 or 3.4 min, respectively, for glnA mRNA; 1.9 or 1.4 min, respectively, for glnN mRNA), suggesting that changes in transcript stability are not involved in the regulation of the expression of both genes. Deletions of the glnA and glnN upstream regions were used to delimit the promoter and the regulatory sequences of both genes. Primer extension analysis showed that structure of the glnA gene promoter resembles those of the NtcA-regulated promoters. In addition, mobility shift assays demonstrated that purified, Escherichia coli-expressed Synechocystis NtcA protein binds to the promoter of the glnA gene. Primer extension also revealed the existence of a sequence related to the NtcA binding site upstream from the glnN promoter. However, E. coli-expressed NtcA failed to bind to this site. These findings suggest that an additional modification of NtcA or an additional factor is required for the regulation of glnN gene expression.
机译:在蓝藻中,Synechocystis sp.。我们以前曾报道过PCC 6803菌株存在谷氨酰胺合成酶活性的两种不同蛋白质:由glnA基因编码的GSI和由glnN基因编码的GSIII。在这项工作中,我们显示了glnA和glnN基因的表达均受氮可利用性变化的调节。 Northern印迹实验和转录融合表明,glnA基因在硝酸盐或铵盐生长的细胞中高度转录,在缺氮的细胞中表达高2至4倍。相反,glnN基因仅在氮缺乏时才高表达。在向缺乏氮的细胞中添加利福平或铵后计算的两种mRNA的半衰期没有显着差异(glnA mRNA分别为2.5或3.4分钟; glnN mRNA分别为1.9或1.4分钟),表明转录稳定性的变化不参与两个基因表达的调节。 glnA和glnN上游区域的缺失用于界定两个基因的启动子和调控序列。引物延伸分析表明,glnA基因启动子的结构类似于NtcA调控的启动子。此外,迁移率变化分析表明纯化的大肠杆菌表达的拟孢囊藻NtcA蛋白与glnA基因的启动子结合。引物延伸还揭示了与glnN启动子上游的NtcA结合位点相关的序列的存在。但是,大肠杆菌表达的NtcA无法结合到该位点。这些发现表明,调节glnN基因表达需要NtcA的另外的修饰或另外的因子。

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