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An Antirepressor SrpR Is Involved in Transcriptional Regulation of the SrpABC Solvent Tolerance Efflux Pump of Pseudomonas putida S12

机译:抗阻遏物SrpR参与恶臭假单胞菌S12的SrpABC耐溶剂外排泵的转录调控。

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摘要

Organic compounds exhibit various levels of toxicity toward living organisms based upon their ability to insert into biological membranes and disrupt normal membrane function. The primary mechanism responsible for organic solvent tolerance in many bacteria is energy-dependent extrusion via efflux pumps. One such bacterial strain, Pseudomonas putida S12, is known for its high tolerance to organic solvents as provided through the SrpABC resistance-nodulation-cell division (RND) family efflux pump. To determine how two putative regulatory proteins (SrpR and SrpS, encoded directly upstream of the SrpABC structural genes) influence SrpABC efflux pump expression, we conducted transcriptional analysis, β-galactosidase fusion experiments, electrophoretic mobility shift assays, and pulldown analysis. Together, the results of these experiments suggest that expression of the srpABC operon can be derepressed by two distinct but complementary mechanisms: direct inhibition of the SrpS repressor by organic solvents and binding of SrpS by its antirepressor SrpR.
机译:基于有机化合物插入生物膜中和破坏正常膜功能的能力,它们对生物具有各种毒性。在许多细菌中导致有机溶剂耐受的主要机制是通过外排泵的能量依赖型挤出。一种这样的细菌菌株恶臭假单胞菌S12,因其对有机溶剂的高耐受性而闻名,这是通过SrpABC耐药结节性细胞分裂(RND)系列外排泵提供的。为了确定两个推定的调节蛋白(SrpR和SrpS,直接在SrpABC结构基因的上游编码)如何影响SrpABC外排泵表达,我们进行了转录分析,β-半乳糖苷酶融合实验,电泳迁移率变动分析和下拉分析。总之,这些实验的结果表明,srpABC操纵子的表达可通过两种不同但互补的机制来抑制:有机溶剂对SrpS阻遏物的直接抑制和其抗阻抑物SrpR的结合。

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