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首页> 外文期刊>Antimicrobial agents and chemotherapy. >A Novel Mechanism of Inactivating Antibacterial Nitro Compounds in the Human Pathogen Staphylococcus aureus by Overexpression of a NADH-Dependent Flavin Nitroreductase
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A Novel Mechanism of Inactivating Antibacterial Nitro Compounds in the Human Pathogen Staphylococcus aureus by Overexpression of a NADH-Dependent Flavin Nitroreductase

机译:通过过表达依赖于NADH依赖性黄素硝化酶的一种新型抗菌硝基化合物的新机制

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Recently, the nitro-substituted bisquaternary bisnaphthalimides were reported to have substantial anti-infective activity against Gram-positive bacteria, including methicillin- resistant Staphylococcus aureus (MRSA). Here, we selected resistant S. aureus clones by cultivation in increasing concentrations of the most active compound, MT02. Interestingly, MT02-resistant variants induced a diffusible red color of the broth. Chromatographic and spectroscopic investigations revealed a stepwise reduction of the bisquaternary bisnaphthalimides' nitro groups to amino groups. The corresponding derivatives were completely inactive against staphylococci. RNA sequencing experiments revealed a strong overexpression of a novel oxidoreductase in MT02-resistant strains. Deletion mutants of this enzyme did not produce the red color and were not able to develop resistance against bisquaternary bisnaphthalimides. Biochemical reactions confirmed an NADH-dependent deactivation of the nitrosubstituted compounds. Thus, this is the first report of a nitroreductase-based antibiotic resistance mechanism in the human pathogen S. aureus.
机译:最近,据报道,硝基取代的Bisquaternary嗜酸基二萘酰胺对革兰氏阳性细菌具有大量的抗感染活性,包括耐甲氧硫菌葡萄球菌(MRSA)。在这里,我们通过培养培养培养浓度的最活性化合物MT02的培养。有趣的是,MT02抗性变体诱导肉汤的可扩散红颜色。色谱和光谱研究表明,BisquaterNary嗜酸亚萘酰亚胺硝基的逐步减少到氨基。相应的衍生物对葡萄球菌完全无活性。 RNA测序实验揭示了在MT02抗性菌株中的新型氧化还原酶的强烈过度表达。该酶的缺失突变体没有产生红颜色,并且不能产生对Bisquaternaphthalimides的抗性。生物化学反应证实了亚硝磺酸酯化合物的NADH依赖性失活。因此,这是人病原体S.金黄色葡萄球菌中基于硝基因酶的抗生素抗性机制的第一报告。

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