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The crystal structure of MexR from Pseudomonas aeruginosa in complex with its antirepressor ArmR

机译:铜绿假单胞菌MexR的晶体结构及其抗阻遏物ArmR

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The intrinsic antimicrobial resistance of the opportunistic human pathogen Pseudomonas aeruginosa is compounded in mutant strains that overexpress multidrug efflux pumps such as the prominent drug-proton antiporter, MexAB-OprM. The primary regulator of the mexAB-oprM operon is the MarR family repressor, MexR. An additional repressor, NalC, also regulates mexAB-oprM by controlling expression of ArmR, an antirepressor peptide that is hypothesized to prevent the binding of MexR to its cognate DNA operator via an allosteric protein-peptide interaction. To better understand how ArmR modulates MexR, we determined the MexR-binding region of ArmR as its C-terminal 25 residues and solved the crystal structure of MexR in a 2:1 complex with this ArmR fragment at 1.8 A resolution. This structure reveals that the C-terminal residues of ArmR form a kinked α-helix, which occupies a pseudo-symmetrical and largely hydrophobic binding cavity located at the centre of the MexR dimer. Although the ArmR-binding cavity partially overlaps with the small molecule effector-binding sites of other MarR family members, it possesses a larger and more complex binding surface to accommodate the greater size and specific physicochemical properties of a peptide effector. Comparison with the structure of apo-MexR reveals that ArmR stabilizes a dramatic conformational change that is incompatible with DNA-binding. Thus, this work defines the structural mechanism by which ArmR allosterically derepresses MexR-controlled gene expression in P. aeruginosa and reveals important insights into the regulation of multidrug resistance.
机译:机会性人类病原体铜绿假单胞菌的内在抗药性在过量表达多药外排泵的突变菌株(如著名的质子反转运蛋白MexAB-OprM)中得到了增强。 mexAB-oprM操纵子的主要调控因子是MarR家族阻遏物MexR。另一个阻遏物NalC也可通过控制ArmR的表达来调节mexAB-oprM,ArmR是一种抗阻遏剂肽,被认为可通过变构蛋白-肽相互作用防止MexR与其同源DNA操纵子结合。为了更好地了解ArmR如何调节MexR,我们将ArmR的MexR结合区确定为其C端25个残基,并以2:1的复合物解析该MexR的晶体结构,该ArmR片段的分辨率为1.8A。这种结构揭示了ArmR的C末端残基形成了一个扭结的α-螺旋,该螺旋占据了位于MexR二聚体中心的伪对称且疏水性强的结合腔。尽管ArmR结合腔与其他MarR家族成员的小分子效应子结合位点部分重叠,但它具有更大,更复杂的结合表面,以适应肽效应子的更大尺寸和特定的理化性质。与apo-MexR的结构比较表明,ArmR稳定了与DNA结合不相容的剧烈构象变化。因此,这项工作定义了ArmR变构地抑制铜绿假单胞菌中MexR调控的基因表达的结构机制,并揭示了对多药耐药性调控的重要见解。

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