首页> 美国卫生研究院文献>Journal of Bacteriology >Transposon Disruption of the Complex I NADH Oxidoreductase Gene (snoD) in Staphylococcus aureus Is Associated with Reduced Susceptibility to the Microbicidal Activity of Thrombin-Induced Platelet Microbicidal Protein 1
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Transposon Disruption of the Complex I NADH Oxidoreductase Gene (snoD) in Staphylococcus aureus Is Associated with Reduced Susceptibility to the Microbicidal Activity of Thrombin-Induced Platelet Microbicidal Protein 1

机译:金黄色葡萄球菌中复杂的I NADH氧化还原酶基因(snoD)的转座子破坏与对凝血酶诱导的血小板杀微生物蛋白1的杀微生物活性降低的敏感性相关。

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摘要

The cationic molecule thrombin-induced platelet microbicidal protein 1 (tPMP-1) exerts potent activity against Staphylococcus aureus. We previously reported that a Tn551 S. aureus transposon mutant, ISP479R, and two bacteriophage back-transductants, TxA and TxB, exhibit reduced in vitro susceptibility to tPMP-1 (tPMP-1r) compared to the parental strain, ISP479C (V. Dhawan, M. R. Yeaman, A. L. Cheung, E. Kim, P. M. Sullam, and A. S. Bayer, Infect. Immun. >65:3293-3299, 1997). In the current study, the genetic basis for tPMP-1r in these mutants was identified. GenBank homology searches using sequence corresponding to chromosomal DNA flanking Tn551 mutant strains showed that the fourth gene in the staphylococcal mnh operon (mnhABCDEFG) was insertionally inactivated. This operon was previously reported to encode a Na+/H+ antiporter involved in pH tolerance and halotolerance. However, the capacity of ISP479R to grow at pH extremes and in high NaCl concentrations (1 to 3 M), coupled with its loss of transmembrane potential (ΔΨ) during postexponential growth, suggested that the mnh gene products are not functioning as a secondary (i.e., passive) Na+/H+ antiporter. Moreover, we identified protein homologies between mnhD and the nuo genes of Escherichia coli that encode components of a complex I NADH:ubiquinone oxidoreductase. Consistent with these data, exposures of tPMP-1-susceptible (tPMP-1s) parental strains (both clinical and laboratory derived) with either CCCP (a proton ionophore which collapses the proton motive force) or pieracidin A (a specific complex I enzyme inhibitor) significantly reduced tPMP-induced killing to levels seen in the tPMP-1r mutants. To reflect the energization of the gene products encoded by the mnh operon, we have renamed the locus sno (S. aureus nuo orthologue). These novel findings indicate that disruption of a complex I enzyme locus can confer reduced in vitro susceptibility to tPMP-1 in S. aureus.
机译:阳离子分子凝血酶诱导的血小板杀微生物蛋白1(tPMP-1)对金黄色葡萄球菌发挥有效作用。我们之前曾报道过,与Tn551金黄色葡萄球菌转座子突变体ISP479R和两种噬菌体反向转导子TxA和TxB相比,它们对tPMP-1的体外敏感性降低(tPMP-1 r )。亲本菌株ISP479C(V. Dhawan,MR Yeaman,AL Cheung,E. Kim,PM Sullam和AS Bayer,Infect。Immun。> 65: 3293-3299,1997)。在本研究中,鉴定了这些突变体中tPMP-1 r 的遗传基础。 GenBank同源性搜索使用对应于Tn551突变菌株两侧染色体DNA的序列进行显示,葡萄球菌mnh操纵子(mnhABCDEFG)中的第四个基因被插入失活。以前有报道称该操纵子编码Na + / H + 反向转运蛋白,参与pH耐性和耐盐性。然而,ISP479R在极端pH和高NaCl浓度(1至3 M)下生长的能力,以及其在指数后生长过程中跨膜电位(ΔΨ)的损失,表明mnh基因产物不能作为次生(即,被动)Na + / H + 反转运蛋白。此外,我们确定了mnhD和编码复杂I NADH:泛醌氧化还原酶成分的大肠杆菌nuo基因之间的蛋白质同源性。与这些数据一致的是,CCP(质子离子载体破坏了质子原动力)或pieracidin暴露于tPMP-1易感(tPMP-1 s )亲本菌株(临床和实验室来源) A(一种特定的复合物I酶抑制剂)可将tPMP诱导的杀伤力显着降低至tPMP-1 r 突变体中所见的水平。为了反映由mnh操纵子编码的基因产物的能量,我们将其重命名为sno(S. aureus nuo orthologue)。这些新发现表明,复杂的I酶基因座的破坏可以降低金黄色葡萄球菌对tPMP-1的体外敏感性。

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