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首页> 外文期刊>Antimicrobial agents and chemotherapy. >Cloning and Characterization of SmeT, a Repressor of the Stenotrophomonas maltophilia Multidrug Efflux Pump SmeDEF.
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Cloning and Characterization of SmeT, a Repressor of the Stenotrophomonas maltophilia Multidrug Efflux Pump SmeDEF.

机译:SmeT的克隆和特征,SmeT,嗜麦芽窄食单胞菌多药外排泵SmeDEF的阻遏物。

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We report on the cloning of the gene smeT, which encodes the transcriptional regulator of the Stenotrophomonas maltophilia efflux pump SmeDEF. SmeT belongs to the TetR and AcrR family of transcriptional regulators. The smeT gene is located upstream from the structural operon of the pump genes smeDEF and is divergently transcribed from those genes. Experiments with S. maltophilia and the heterologous host Escherichia coli have demonstrated that SmeT is a transcriptional repressor. S1 nuclease mapping has demonstrated that expression of smeT is driven by a single promoter lying close to the 5' end of the gene and that expression of smeDEF is driven by an unique promoter that overlaps with promoter PSMET: The level of expression of smeT is higher in smeDEF-overproducing S. maltophilia strain D457R, which suggests that SmeT represses its own expression. Band-shifting assays have shown that wild-type strain S. maltophilia D457 contains a cellular factor(s) capable of binding to the intergenic smeT-smeD region. That cellular factor(s) was absent from smeDEF-overproducing S. maltophilia strain D457R. The sequence of smeT from D457R showed a point mutation that led to a Leu166Gln change within the SmeT protein. This change allowed overexpression of both smeDEF and smeT in D457R. It was noteworthy that expression of wild-type SmeT did not fully complement the smeT mutation in D457R. This suggests that the wild-type protein is not dominant over the mutant SmeT.
机译:我们报告了基因smeT的克隆,该基因编码嗜麦芽窄食单胞菌外排泵SmeDEF的转录调节因子。 SmeT属于TetR和AcrR转录调节子家族。 smeT基因位于泵浦基因smeDEF的结构操纵子的上游,并从这些基因发散转录。嗜麦芽孢杆菌和异源宿主大肠杆菌的实验证明SmeT是转录阻遏物。 S1核酸酶作图已证明smeT的表达由靠近基因5'端的单个启动子驱动,而smeDEF的表达由与启动子PSMET重叠的独特启动子驱动:smeT的表达水平更高在过量表达smeDEF的嗜麦芽孢杆菌菌株D457R中,这表明SmeT抑制其自身表达。频移分析表明,野生型嗜麦芽孢杆菌D457含有能够结合基因间smeT-smeD区域的细胞因子。过量生产smeDEF的嗜麦芽孢杆菌D457R菌株不存在该细胞因子。来自D457R的smeT序列显示出点突变,导致SmeT蛋白内Leu166Gln发生变化。此更改允许smeDEF和smeT在D457R中都过表达。值得注意的是,野生型SmeT的表达不能完全补充D457R中的smeT突变。这表明野生型蛋白并不优于突变SmeT。

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