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Molecular Characterization of MexL the Transcriptional Repressor of the mexJK Multidrug Efflux Operon in Pseudomonas aeruginosa

机译:铜绿假单胞菌mexJK多药外排操纵子的转录阻遏物MexL的分子表征

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摘要

The Pseudomonas aeruginosa mexJK efflux operon is constitutively expressed in mutants with defects in the upstream mexL gene, which encodes a repressor of the TetR family. MexL and a MexLA47D mutant protein were purified from Escherichia coli as fusion proteins with carboxy-terminal hexahistidine tags. Native polyacrylamide gel electrophoresis and size exclusion chromatography revealed that MexL is a tetramer in solution. MexL and MexLA47D oligomerization was confirmed using a genetic approach, and the MexLA47D mutant protein was not impaired in multimerization. Gel mobility shift and footprinting assays demonstrated that MexL, but not MexLA47D, binds specifically to the 94-bp mexL-mexJ intergenic region to sequences located between positions −84 and −20 from the mexJ initiation codon. MexL protected about 60 nucleotides on each strand, and the protected regions overlapped almost perfectly, a finding consistent with MexL regulating the expression of both mexL and mexJK, which was ascertained by gene fusion analyses. The protected region contains predicted −10 and −35 promoter sequences for both mexL and mexJ, with partially overlapping −10 regions. The mexL promoter assignment was verified by mapping the mexL transcription start site, and the mexJ promoter was localized to the predicted regions using lacZ fusions. The MexL-protected region contains two inverted GTATTT repeats, and their location in the protected region and overlap with the mexL and mexJ promoter sequences strongly support a role in MexL binding.
机译:铜绿假单胞菌mexJK外排操纵子在突变型上游表达mexL基因的突变体中组成性表达,该基因编码TetR家族的阻遏物。从大肠杆菌中纯化出MexL和MexLA47D突变蛋白,作为具有羧基末端六组氨酸标签的融合蛋白。天然聚丙烯酰胺凝胶电泳和尺寸排阻色谱法表明,MexL是溶液中的四聚体。使用遗传方法确认了MexL和MexLA47D的寡聚,并且MexLA47D突变蛋白在多聚反应中没有受到损害。凝胶迁移率迁移和印迹分析表明,MexL,而非MexLA47D,与94 bp的mexL-mexJ基因间区域特异性结合,该序列位于mexJ起始密码子的-84和-20之间。 MexL在每条链上保护大约60个核苷酸,并且保护区几乎完全重叠,这一发现与MexL调节mexL和mexJK的表达一致,这一点已通过基因融合分析确定。该保护区包含针对mexL和mexJ的预测的-10和-35启动子序列,部分重叠的-10区。通过映射mexL转录起始位点来验证mexL启动子的分配,并使用lacZ融合将mexJ启动子定位到预测区域。 MexL保护区包含两个反向的GTATTT重复序列,它们在保护区中的位置以及与mexL和mexJ启动子序列重叠的位置强烈支持MexL结合中的作用。

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