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首页> 外文期刊>Antimicrobial agents and chemotherapy. >MepR, a repressor of the Staphylococcus aureus MATE family multidrug efflux pump MepA, is a substrate-responsive regulatory protein.
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MepR, a repressor of the Staphylococcus aureus MATE family multidrug efflux pump MepA, is a substrate-responsive regulatory protein.

机译:MepR是金黄色葡萄球菌MATE系列多药外排泵MepA的阻遏物,是一种底物响应性调节蛋白。

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The mepRAB gene cluster of Staphylococcus aureus encodes a MarR family repressor (MepR; known to repress mepA expression), a MATE family multidrug efflux pump (MepA), and a protein of unknown function (MepB). In this report, we show that MepR also is autoregulatory, repressing the expression of its own gene. Exposure of strains containing a mepR::lacZ fusion with mepR provided in trans under the control of an inducible promoter, or a mepA::lacZ fusion alone, to subinhibitory concentrations of MepA substrates resulted in variably increased expression mainly of mepA. Mobility shift assays revealed that MepR binds upstream of mepR and mepA, with an apparently higher affinity for the mepA binding site. MepA substrates abrogated MepR binding to each site in a differential manner, with the greatest effect observed on the MepR-mepA operator interaction. DNase I footprinting identified precise binding sites which included promoter motifs, inverted repeats, and transcription start sites for mepR and mepA, as well as a conserved GTTAG motif, which may be a signature recognition sequence for MepR. Analogous to other multidrug efflux pump regulatory proteins such as QacR, the substrate-MepR interaction likely results in its dissociation from its mepA, and in a more limited fashion its mepR, operator sites and relief of its repressive effect. The enhanced effect of substrates on mepA compared to mepR expression, and on the MepR-mepA operator interaction, results in significant relief of mepA and relative maintenance of mepR repression, leading to increased MepA protein unimpeded by MepR when the need for detoxification exists.
机译:金黄色葡萄球菌的mepRAB基因簇编码MarR家族阻遏物(MepR;已知抑制mepA表达),MATE家族多药外排泵(MepA)和功能未知的蛋白(MepB)。在本报告中,我们显示MepR也是自调节的,可抑制其自身基因的表达。在诱导型启动子或单独的mepA :: lacZ融合蛋白的控制下,将含有与mepR融合的mepR :: lacZ融合体的菌株暴露于亚抑制浓度的MepA底物,导致主要是mepA的表达增加。迁移率变化分析表明,MepR与mepR和mepA上游结合,对mepA结合位点的亲和力明显更高。 MepA底物以不同的方式消除了MepR与每个位点的结合,对MepR-mepA操作员的相互作用影响最大。 DNase I足迹确定了精确的结合位点,其中包括启动子基序,反向重复序列和mepR和mepA的转录起始位点,以及保守的GTTAG基序,这可能是MepR的特征识别序列。与其他多药外排泵调节蛋白(例如QacR)类似,底物-MepR相互作用可能导致其与mepA分离,并以更有限的方式使其mepR,操纵位点和其抑制作用减轻。与mepR表达相比,底物对mepA的增强作用以及对MepR-mepA操纵子相互作用的增强,可显着缓解mepA并相对维持mepR抑制,导致存在排毒需求时不受MepR阻碍的MepA蛋白增加。

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