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首页> 外文期刊>Structure >Mutation-Induced Population Shift in the MexR Conformational Ensemble Disengages DNA Binding: A Novel Mechanism for MarR Family Derepression
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Mutation-Induced Population Shift in the MexR Conformational Ensemble Disengages DNA Binding: A Novel Mechanism for MarR Family Derepression

机译:MexR构象集合中的突变诱导种群转移解除DNA结合:MarR家族抑制的新型机制。

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摘要

MexR is a repressor of the MexAB-OprM multidrug efflux pump operon of Pseudomonas aeruginosa, where DNA-binding impairing mutations lead to multidrug resistance (MDR). Surprisingly, the crystal structure of an MDR-conferring MexR mutant R21W (2.19 angstrom) presented here is closely similar to wildtype MexR. However, our extended analysis, by molecular dynamics and small-angle X-ray scattering, reveals that the mutation stabilizes a ground state that is deficient of DNA binding and is shared by both mutant and wild-type MexR, whereas the DNA-binding state is only transiently reached by the more flexible wild-type MexR. This population shift in the conformational ensemble is effected by mutation-induced allosteric coupling of contact networks that are independent in the wild-type protein. We propose that the MexR-R21W mutant mimics derepression by small-molecule binding to MarR proteins, and that the described allosteric model based on population shifts may also apply to other MarR family members.
机译:MexR是铜绿假单胞菌MexAB-OprM多药外排泵操纵子的阻遏物,其中DNA结合受损突变导致多药耐药性(MDR)。出乎意料的是,此处介绍的具有MDR的MexR突变体R21W(2.19埃)的晶体结构与野生型MexR极为相似。但是,我们通过分子动力学和小角度X射线散射进行的扩展分析表明,该突变稳定了一个基态,该基态缺乏DNA结合,并且由突变型和野生型MexR共享,而DNA结合状态只有更灵活的野生型MexR才能短暂达到。构象集合体中的这种种群转移是由突变诱导的接触网络的变构偶联而实现的,该接触网络独立于野生型蛋白质。我们提出,MexR-R21W突变体通过与MarR蛋白的小分子结合来模拟去阻遏作用,并且基于种群转移的上述变构模型也可能适用于其他MarR家族成员。

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