首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The CpxR/CpxA Two-component Regulatory System Up-regulates the Multidrug Resistance Cascade to Facilitate Escherichia coli Resistance to a Model Antimicrobial Peptide
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The CpxR/CpxA Two-component Regulatory System Up-regulates the Multidrug Resistance Cascade to Facilitate Escherichia coli Resistance to a Model Antimicrobial Peptide

机译:CpxR / CpxA两组分调节系统上调多药耐药级联反应以促进大肠杆菌对模型抗菌肽的耐药性

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摘要

A genome-wide susceptibility assay was used to identify specific CpxR-dependent genes that facilitate Escherichia coli resistance to a model cationic antimicrobial peptide, protamine. A total of 115 strains from the Keio Collection, each of which contained a deletion at a demonstrated or predicted CpxR/CpxA-dependent locus, were tested for protamine susceptibility. One strain that exhibited high susceptibility carried a deletion of tolC, a gene that encodes the outer membrane component of multiple tripartite multidrug transporters. Concomitantly, two of these efflux systems, AcrAB/TolC and EmrAB/TolC, play major roles in protamine resistance. Activation of the CpxR/CpxA system stimulates mar transcription, suggesting a new regulatory circuit that enhances the multidrug resistance cascade. Tripartite multidrug efflux systems contribute to bacterial resistance to protamine differently from the Tat system. DNase I footprinting analysis demonstrated that the CpxR protein binds to a sequence located in the −35 and −10 regions of mar promoter. This sequence resembles the consensus CpxR binding site, however, on the opposite strand. aroK, a CpxR-dependent gene that encodes a shikimate kinase in the tryptophan biosynthesis pathway, was also found to facilitate protamine resistance. Specific aromatic metabolites from this pathway, such as indole, can stimulate expression of well studied CpxR-dependent genes degP and cpxP, which are not components of the tripartite multidrug transporters. Thus, we propose a novel mechanism for E. coli to modulate resistance to protamine and likely other cationic antimicrobial peptides in which the CpxR/CpxA system up-regulates mar transcription in response to specific aromatic metabolites, subsequently stimulating the multidrug resistance cascade.
机译:使用全基因组敏感性分析来鉴定特定的CpxR依赖性基因,这些基因促进大肠杆菌对模型阳离子抗微生物肽鱼精蛋白的抗性。测试了来自庆应义Collection(Keio Collection)的总共115株菌株,其中每一个均在已证实或预测的CpxR / CpxA依赖性基因座处包含一个缺失,以测试其鱼精蛋白敏感性。表现出高敏感性的一种菌株携带了tolC缺失,tolC是一种编码多种三方多药转运蛋白外膜成分的基因。同时,其中的两个外排系统AcrAB / TolC和EmrAB / TolC在鱼精蛋白抗性中起主要作用。 CpxR / CpxA系统的激活刺激了mar转录,提示了一种新的调节电路,可增强多药耐药性级联反应。与Tat系统不同,三方多药外排系统对细菌对鱼精蛋白的抵抗力有所不同。 DNase I足迹分析表明CpxR蛋白与mar启动子的-35和-10区中的序列结合。该序列类似于相反链上的共有CpxR结合位点。还发现aroK是一种CpxR依赖性基因,在色氨酸生物合成途径中编码encode草酸激酶,还可以促进鱼精蛋白抗性。来自该途径的特定芳香族代谢物(例如吲哚)可以刺激经过充分研究的CpxR依赖基因degP和cpxP的表达,而这些基因不是三方多药转运蛋白的组成部分。因此,我们提出了一种新的机制,针对大肠杆菌来调节对鱼精蛋白和其他可能的阳离子抗菌肽的抗性,其中CpxR / CpxA系统响应特定的芳香族代谢产物上调mar转录,从而刺激多重耐药性级联反应。

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