首页> 外文期刊>Journal of bacteriology >Influence of a Putative ECF Sigma Factor on Expression of the Major Outer Membrane Protein, OprF, in Pseudomonas aeruginosa and Pseudomonas fluorescens
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Influence of a Putative ECF Sigma Factor on Expression of the Major Outer Membrane Protein, OprF, in Pseudomonas aeruginosa and Pseudomonas fluorescens

机译:假定的ECF西格玛因子对铜绿假单胞菌和荧光假单胞菌中主要外膜蛋白OprF表达的影响

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The gene encoding OprF, a major outer membrane protein inPseudomonas species (formerly known as type 1 pseudomonads), was thought to be constitutively transcribed from a single sigma 70 promoter immediately upstream of the gene. We now report the identification of a novel putative ECF (extracytoplasmic function) sigma factor gene, sigX, located immediately upstream of oprF in both Pseudomonas aeruginosaPAO1 and Pseudomonas fluorescens OE 28.3 and show that disruption of this gene significantly reduces OprF expression. InP. aeruginosa, Northern analysis demonstrated that this reduction was a result of an effect on transcription of monocistronicoprF combined with a polar effect due to termination of a transcript containing sigX and oprF. Comparison of sigX-disrupted and wild-type cell transcripts by primer extension indicated that monocistronic transcription ofoprF occurs from two overlapping promoters, one that is SigX-dependent and resembles ECF sigma factor promoters in its minus-35 region and another promoter that is independent of SigX and is analogous to the sigma 70-type promoter previously reported. Complementation of the P. aeruginosa sigX-disrupted mutant with plasmid-encoded OprF did not resolve the phenotypes associated with this mutant, which included a markedly reduced logarithmic-phase growth rate in rich medium (compared to that in minimal medium), further reduction of the growth rate in a low-osmolarity environment, secretion of an unidentified pigment, and increased sensitivity to the antibiotic imipenem. This indicates that SigX is involved in the regulation of other genes in P. aeruginosa. Disruption of the sigX gene in P. fluorescens also had an effect on the logarithmic-phase growth rate in rich medium. A conservedsigX gene was also identified in a Pseudomonas syringae isolate and six P. aeruginosa clinical isolates. Collectively, these data indicate that an ECF sigma factor plays a role in the regulation and expression of OprF and also affects other genes.
机译:编码OprF的基因是假单胞菌属物种中的一种主要外膜蛋白(以前称为1型假单胞菌),被认为是从该基因的紧邻上游的一个sigma 70启动子组成性转录而成。我们现在报告鉴定出一个新的假定的ECF(胞浆外功能)sigma因子基因, sigX ,位于两个铜绿假单胞菌中的 oprF 上游。 PAO1和荧光假单胞菌 OE 28.3,表明该基因的破坏显着降低了OprF表达。在 P。 aeruginosa ,Northern分析表明,这种降低是由于对单顺反子 oprF 转录的影响与极性效应(由于包含 sigX 的转录终止)相结合的结果和 oprF 。通过引物延伸比较 sigX 和野生型细胞转录本,表明 oprF 的单顺反子转录来自两个重叠的启动子,一个是SigX依赖性的,类似于ECF sigma。负35区域的α-β启动子和另一个独立于SigX且类似于先前报道的sigma 70型启动子的启动子。 P的补充。带有质粒编码的OprF的铜绿假单胞菌sigX破坏的突变体无法解析与该突变体相关的表型,包括在丰富培养基中的对数期生长速率显着降低(与在最小培养基中相比),进一步降低了低渗环境下的生长速度加快,分泌未知的色素以及对抗生素亚胺培南的敏感性增加。这表明SigX参与了 P中其他基因的调控。铜绿 P中 sigX 基因的破坏。荧光素也对丰富培养基中对数相的生长速率有影响。在一个丁香假单胞菌分离株和六个 P中也鉴定出一个保守的 sigX 基因。铜绿菌的临床分离株。总体而言,这些数据表明ECFσ因子在OprF的调节和表达中起作用,并且还影响其他基因。

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