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首页> 外文期刊>International journal of antimicrobial agents >Transcriptional profiling of the two-component regulatory system VraSR in Staphylococcus aureus with low-level vancomycin resistance
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Transcriptional profiling of the two-component regulatory system VraSR in Staphylococcus aureus with low-level vancomycin resistance

机译:具有低水平万古霉素耐药性的金黄色葡萄球菌中两组分调节系统VraSR的转录谱分析

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The objective of this study was to comprehensively identify the target genes regulated by the two component regulatory system VraSR in Staphylococcus aureus and to clarify the role of VraSR in low-level vancomycin resistance. Expression of vraS was determined by real-time quantitative reverse transcripta se PCR (qRT-PCR). A clinical heterogeneous vancomycin-intermediate S. aureus (hVISA) strain B6D and a vancomycin-intermediate S. aureus (VISA) strain D7 that was induced from a meticillin-resistant S. aureus strain were selected to construct vraSR null mutants by allelic replacement. The vraSR-complemented strain B6D_c was also constructed by allelic replacement. Genes differentially expressed in the wild-type, vraSR null mutant and complemented strains were detected using RNA-Seq and were validated by qRT-PCR. Compared with vancomycin-susceptible S. aureus strains, expression of vraS was upregulated in all four isogenic hVISA strains. Vancomycin minimum inhibitory concentrations (MICs) in the vraSR null mutants B6D-Delta vraSR and D7-Delta vraSR were significantly lower than in the wild-type strains B6D and D7 and the complemented strain B6D_c. RNA-Seq and qRT-PCR data showed that expression of genes encoding FmtA protein, foldase protein PrsA, capsular polysaccharide biosynthesis glycosyltransferase, TcaA, a putative membrane protein, and six hypothetical proteins was down regulated in both vraSR-null mutants B6D-Delta vraSR and D7-Delta vraSR. Most of these differentially expressed proteins are involved in cell wall biosynthesis, which is associated with vancomycin resistance in S. aureus. In conclusion, VraSR plays an important role in S. aureus strains with low-level vancomycin resistance. PrsA, FmtA, glycosyltransferase and TcaA are regulated directly or indirectly by VraSR. (C) 2016 Elsevier B.V. and the International Society of Chemotherapy. All rights reserved.
机译:本研究的目的是全面鉴定金黄色葡萄球菌中由两组分调节系统VraSR调节的靶基因,并阐明VraSR在低水平万古霉素耐药性中的作用。通过实时定量逆转录PCR(qRT-PCR)确定vraS的表达。选择由耐甲氧西林金黄色葡萄球菌菌株诱导的临床异种万古霉素中间金黄色葡萄球菌(hVISA)菌株B6D和万古霉素中间金黄色葡萄球菌(VISA)菌株D7,通过等位基因置换构建vraSR null突变体。还通过等位基因置换构建了vraSR互补菌株B6D_c。使用RNA-Seq检测野生型,vraSR空突变体和互补菌株中差异表达的基因,并通过qRT-PCR进行验证。与对万古霉素敏感的金黄色葡萄球菌菌株相比,在所有四个同基因hVISA菌株中vraS的表达均被上调。 vraSR null突变体B6D-Delta vraSR和D7-Delta vraSR中的万古霉素最低抑菌浓度(MICs)明显低于野生型B6D和D7以及互补菌株B6D_c。 RNA-Seq和qRT-PCR数据表明,在两个vraSR-null突变体B6D-Delta vraSR中,编码FmtA蛋白,折叠酶PrsA,荚膜多糖生物合成糖基转移酶,TcaA,推定膜蛋白和六个假设蛋白的基因的表达均被下调。和D7-Delta vraSR。这些差异表达的蛋白质大多数都参与细胞壁生物合成,这与金黄色葡萄球菌对万古霉素的耐药性有关。总之,VraSR在具有低水平万古霉素抗性的金黄色葡萄球菌菌株中起重要作用。 PrsA,FmtA,糖基转移酶和TcaA受VraSR直接或间接调节。 (C)2016 Elsevier B.V.和国际化学疗法学会。版权所有。

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