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Polymyxin Resistance of Pseudomonas aeruginosa phoQ Mutants Is Dependent on Additional Two-Component Regulatory Systems

机译:铜绿假单胞菌phoQ突变体对多粘菌素的抗性取决于其他两个成分的调节系统

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摘要

Pseudomonas aeruginosa can develop resistance to polymyxin as a consequence of mutations in the PhoPQ regulatory system, mediated by covalent lipid A modification. Transposon mutagenesis of a polymyxin-resistant phoQ mutant defined 41 novel loci required for resistance, including two regulatory systems, ColRS and CprRS. Deletion of the colRS genes, individually or in tandem, abrogated the polymyxin resistance of a ΔphoQ mutant, as did individual or tandem deletion of cprRS. Individual deletion of colR or colS in a ΔphoQ mutant also suppressed 4-amino-l-arabinose addition to lipid A, consistent with the known role of this modification in polymyxin resistance. Surprisingly, tandem deletion of colRS or cprRS in the ΔphoQ mutant or individual deletion of cprR or cprS failed to suppress 4-amino-l-arabinose addition to lipid A, indicating that this modification alone is not sufficient for PhoPQ-mediated polymyxin resistance in P. aeruginosa. Episomal expression of colRS or cprRS in tandem or of cprR individually complemented the Pm resistance phenotype in the ΔphoQ mutant, while episomal expression of colR, colS, or cprS individually did not. Highly polymyxin-resistant phoQ mutants of P. aeruginosa isolated from polymyxin-treated cystic fibrosis patients harbored mutant alleles of colRS and cprS; when expressed in a ΔphoQ background, these mutant alleles enhanced polymyxin resistance. These results define ColRS and CprRS as two-component systems regulating polymyxin resistance in P. aeruginosa, indicate that addition of 4-amino-l-arabinose to lipid A is not the only PhoPQ-regulated biochemical mechanism required for resistance, and demonstrate that colRS and cprS mutations can contribute to high-level clinical resistance.
机译:由于共价脂质A修饰介导的PhoPQ调节系统中的突变,铜绿假单胞菌可产生对多粘菌素的抗性。多粘菌素抗性phoQ突变体的转座子诱变定义了抗性所需的41个新基因座,包括两个调控系统ColRS和CprRS。单独或串联删除colRS基因可消除ΔphoQ突变体的多粘菌素抗性,单个或串联删除cprRS也是如此。 ΔphoQ突变体中colR或colS的个别缺失也抑制了4-氨基-1-阿拉伯糖添加到脂质A中,这与这种修饰在多粘菌素抗性中的已知作用一致。令人惊讶地,ΔphoQ突变体中的colRS或cprRS的串联缺失或cprR或cprS的单个缺失未能抑制向脂质A中添加4-氨基-1-阿拉伯糖,这表明仅该修饰不足以使PhoPQ介导的P中的多粘菌素抗性铜绿串联或 cprR 的colRS或cprRS的游离表达分别与Δ phoQ 突变体的Pm抗性表型互补,而 colR 的游离表达,分别没有 colS cprS P。的高度多粘菌素抗性 phoQ 突变体。从多粘菌素治疗的囊性纤维化患者中分离出的铜绿假单胞菌含有 colRS cprS 等位基因突变等位基因;当在Δ phoQ 背景中表达时,这些突变等位基因增强了多粘菌素抗性。这些结果将ColRS和CprRS定义为调节多粘菌素抗性的两组分系统。铜绿假单胞菌,表明向脂质A中添加4-氨基-1-阿拉伯糖并不是抗药性所需的唯一受PhoPQ调节的生化机制,并证明 colRS cprS < / em>突变可导致高水平的临床耐药性。

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