Hypoxia increases Neisseria gonorrhoeae resistance to resazomycins: Role of Efflux Pumps and Oxidative Stress

J. Gibson
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Abstract

Neisseria gonorrhoeae (Ng) has developed resistance to all antibiotics previously and currently recommended for treatment of gonorrhea, underscoring the need for novel antimicrobials against this pathogen.  Resazomycins are highly effective antimicrobials against Ng in vitro. However, when these compounds were tested in a mouse model of gonorrhea, only one resazomycin, resorufin pentyl ether (RPE), exhibited any therapeutic effect. One reason for this difference between in vitro and in vivo therapeutic efficacy is increased resistance to resazomycins at low levels of oxygen (2%). We hypothesized this difference in susceptibility was due to altered activity of multi-drug efflux pumps. To test this, we screened a selection of Ngmutants that do not express or overexpress either the MtrCDE or NorM efflux pumps for Rz susceptibility. Overexpression of MtrCDE resulted in increased resistance to Rz at both 2% and ~20% oxygen suggesting resazurin may be a substrate of this efflux pump. Loss of expression of either MtrCDE or NorM had no effect on the increased resistance of Ng to resazurin at low oxygen. We next sought to determine whether the increased susceptibility of Rz at 20% oxygen is due to oxidative stress. To test this, we measured the susceptibility of Ng to Rz in the presence and absence of the antioxidants, cysteine HCl and glutathione, at 20% oxygen. In the presence of cysteine HCl or glutathione, multiple Ng strains had a higher Rz MIC at 20% oxygen. Here, we have shown oxygen concentration affects Ngsusceptibility to Rz due to increased oxidative stress.
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缺氧增加淋病奈瑟菌对雷唑霉素的耐药性:外排泵和氧化应激的作用
淋病奈瑟菌(Ng)已对以前和目前推荐用于治疗淋病的所有抗生素产生耐药性,这突出表明需要针对该病原体的新型抗菌剂。雷唑霉素是体外抗Ng的高效抗菌剂。然而,当这些化合物在小鼠淋病模型中进行测试时,只有一种雷唑霉素,再芦苯戊醚(RPE)显示出任何治疗效果。体外和体内治疗效果存在差异的一个原因是在低氧水平(2%)下对雷唑霉素的耐药性增加。我们假设这种敏感性差异是由于多药物外排泵活性的改变。为了验证这一点,我们筛选了一些不表达或过表达MtrCDE或NorM外排泵的Ngmutants来检测Rz敏感性。MtrCDE的过表达导致在2%和~20%氧条件下对Rz的抗性增加,表明reazurin可能是该外排泵的底物。MtrCDE或NorM的表达缺失对Ng在低氧条件下对reazurin抗性的增加没有影响。接下来,我们试图确定在20%氧下Rz敏感性的增加是否由于氧化应激。为了验证这一点,我们测量了在20%氧气条件下,在存在和不存在抗氧化剂(半胱氨酸HCl和谷胱甘肽)的情况下,Ng对Rz的敏感性。在半胱氨酸HCl或谷胱甘肽存在下,多个Ng菌株在20%氧下具有较高的Rz MIC。在这里,我们已经证明氧浓度会由于氧化应激的增加而影响ngna对Rz的易感性。
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