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Role of the sRNA GcvB in regulation of cycA in Escherichia coli

机译:SRNA GCVB在大肠杆菌中Cyca调节中的作用

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In Escherichia coli, the gcvB gene encodes a small non-translated RNA that regulates several genes involved in transport of amino acids and peptides (including sstT, oppA and dppA). Microarray analysis identified cycA as an additional regulatory target of GcvB. The cycA gene encodes a permease for the transport of glycine, d-alanine, d-serine and d-cycloserine. RT-PCR confirmed that GcvB and the Hfq protein negatively regulate cycA mRNA in cells grown in Luria–Bertani broth. In addition, deletion of the gcvB gene resulted in increased sensitivity to d-cycloserine, consistent with increased expression of cycA. A cycA?:?:?lacZ translational fusion confirmed that GcvB negatively regulates cycA expression in Luria–Bertani broth and that Hfq is required for the GcvB effect. GcvB had no effect on cycA?:?:?lacZ expression in glucose minimal medium supplemented with glycine. However, Hfq still negatively regulated the fusion in the absence of GcvB. A set of transcriptional fusions of cycA to lacZ identified a sequence in cycA necessary for regulation by GcvB. Analysis of GcvB identified a region complementary to this region of cycA mRNA. However, mutations predicted to disrupt base-pairing between cycA mRNA and GcvB did not alter expression of cycA?:?:?lacZ. A model for GcvB function in cell physiology is discussed.
机译:在大肠杆菌中,GCVB基因编码一个小的非转化RNA,所述小型非翻译RNA调节涉及氨基酸和肽的运输(包括SSTT,OPPPA)的几种基因。微阵列分析将Cyca鉴定为GCVB的额外调节靶标。 CYCA基因编码含甘氨酸,D-丙氨酸,D-丝氨酸和D-环丝氨酸的允许释放。 RT-PCR证实,GCVB和HFQ蛋白在水稻 - Bertani肉汤中生长的细胞中产生了负调节Cyca mRNA。此外,GCVB基因的缺失导致对D-环丝氨酸的敏感性增加,与Cyca的表达增加一致。一个Cyca?:?LacZ翻译融合证实,GCVB负调节Luria-Bertani肉汤中的Cyca表达,并且GCVB效应需要HFQ。 GCVB对Cyca没有影响?:?:?葡萄糖最小培养基的LacZ表达,补充有甘氨酸。然而,HFQ仍然在没有GCVB的情况下对融合产生负面调节。 Cyca至LacZ的一组转录融合鉴定了通过GCVB调节所需的Cyca中的序列。 GCVB分析鉴定了与该区域互补的Cyca mRNA区域的区域。然而,预测破坏Cyca mRNA和GCVB之间碱基对的突变没有改变Cyca的表达?:?:?Lacz。讨论了细胞生理中GCVB功能模型。

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