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Pseudomonas aeruginosa outer membrane protein OprH: expression from the cloned gene and function in EDTA and gentamicin resistance.

机译:铜绿假单胞菌外膜蛋白OprH:从克隆的基因表达并在EDTA和庆大霉素抗性中起作用。

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摘要

Overexpression of major outer membrane protein OprH of Pseudomonas aeruginosa as a result of mutation (in strain H181) or adaptation to low Mg2+ concentrations (in parent strain H103) is accompanied by increased resistance to polymyxin B, gentamicin, and EDTA. A 2.8-kb EcoRI fragment containing the oprH gene was subcloned into several different expression plasmids in Escherichia coli. These experiments showed that significant levels of OprH could be produced from a promoter on the EcoRI fragment; that the cloned oprH gene was not regulated by Mg2+ deficiency; that there were no differences in the expression of OprH in any construction, regardless of whether the gene from strain H103 or its OprH-overexpressing, polymyxin B-resistant derivative, strain H181, was used; and that overexpression of OprH in E. coli to the level observed in P. aeruginosa H181 did not result in a resistance phenotype. These results favored the conclusion that the mutation in strain H181 was a regulatory rather than a promoter mutation. The oprH gene was cloned behind the benzoate-inducible pm promoter in plasmid pGB25 and transferred to P. aeruginosa H103. Overexpression of OprH from the cloned gene in H103/pGB25 resulted in EDTA resistance but not polymyxin B resistance. This result suggested that another factor, possibly lipopolysaccharide, was affected by the mutation in strain H181. Consistent with this suggestion was the demonstration that mutants of strain H181 with alterations in lipopolysaccharide had reverted to wild-type polymyxin B susceptibility but had unaltered gentamicin and EDTA resistance. These data were consistent with the hypothesis that OprH replaces outer membrane-stabilizing divalent cations.
机译:突变(在菌株H181中)或适应低Mg2 +浓度(在亲本菌株H103中)导致铜绿假单胞菌主要外膜蛋白OprH的过表达伴随着对多粘菌素B,庆大霉素和EDTA的抗性增强。将含有oprH基因的2.8kb EcoRI片段亚克隆到大肠杆菌中的几种不同表达质粒中。这些实验表明,从EcoRI片段上的启动子可以产生大量的OprH。克隆的oprH基因不受Mg2 +缺乏的调控;无论使用H103菌株的基因还是其过表达OprH的多粘菌素B抗性衍生物H181菌株,OprH的表达在任何结构上都没有差异;并且在大肠杆菌中过表达OprH至铜绿假单胞菌H181中观察到的水平没有导致抗性表型。这些结果支持这样的结论,即菌株H181中的突变是调节性突变而不是启动子突变。将oprH基因克隆到质粒pGB25中苯甲酸酯诱导的pm启动子之后,并转移到铜绿假单胞菌H103中。 H103 / pGB25中克隆的基因过表达的OprH导致EDTA耐药,但没有多粘菌素B耐药。该结果表明,另一种因素,可能是脂多糖,受到菌株H181突变的影响。与该建议一致的是,证明了具有脂多糖改变的H181菌株的突变体已恢复为野生型多粘菌素B敏感性,但对庆大霉素和EDTA的抗性未改变。这些数据与OprH替代稳定外膜的二价阳离子的假设一致。

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