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HapR 配体结合口袋的多样性归因于其与其他同源物相比对几种抑制剂的独特性——从结构和分子角度来看。

Diversity in the ligand binding pocket of HapR attributes to its uniqueness towards several inhibitors with respect to other homologues - A structural and molecular perspective.

机构信息

CSIR-Institute of Microbial Technology, Sector 39A, Chandigarh 160036, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, India.

CSIR-Indian Institute of Chemical Biology, Raja S C Mullick Road, Jadavpur, Kolkata 700032, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, India.

出版信息

Int J Biol Macromol. 2023 Apr 1;233:123495. doi: 10.1016/j.ijbiomac.2023.123495. Epub 2023 Feb 2.

Abstract

Vibrio cholerae is a prolific bacterium. Cumulative studies clearly demonstrate the key role of quorum sensing on the lifecycle of this bacterium. Of the sensory network components, HapR is known as high cell density master regulator. Until now, no information is available on native HapR ligand despite the protein having a ligand binding pocket. Interestingly, function of SmcR, a HapR homologue of Vibrio vulnificus is inhibited by a small molecule Qstatin. Structural analysis of SmcR with Qstatin identifies key interacting residues in SmcR ligand binding domain. Despite bearing significant homology with SmcR, HapR function remained unabated by Qstatin. Sequence alignment indicates divergence in the key residues of ligand binding pocket between these two regulators. A series of ligand binding domain mutants of HapR was constructed where only HapR quadruple mutant responded to Qstatin and newly synthesized IMT-VC-212. Crystal structure analysis revealed four key residues are responsible for changes in the volume of ligand binding pocket of HapR quadruple mutant compared to the wild type counterpart, thereby increasing the accessibility of Qstatin and its derivative in case of the former. The mechanistic insights exuberating from this study will remain instrumental in designing inhibitors against wild type HapR.

摘要

霍乱弧菌是一种多产的细菌。累积的研究清楚地表明群体感应在这种细菌的生命周期中起着关键作用。在感应网络组件中,HapR 被称为高细胞密度主调节剂。尽管该蛋白具有配体结合口袋,但迄今为止,尽管该蛋白具有配体结合口袋,但尚未有关于天然 HapR 配体的信息。有趣的是,Vibrio vulnificus 的 HapR 同源物 SmcR 的功能被小分子 Qstatin 抑制。SmcR 与 Qstatin 的结构分析确定了 SmcR 配体结合域中的关键相互作用残基。尽管与 SmcR 具有显著同源性,但 HapR 功能不受 Qstatin 的影响。序列比对表明这两个调节剂之间的配体结合口袋的关键残基存在差异。构建了一系列 HapR 的配体结合域突变体,只有 HapR 四重突变体对 Qstatin 和新合成的 IMT-VC-212 有反应。晶体结构分析表明,与野生型相比,HapR 四重突变体的配体结合口袋的四个关键残基的体积发生了变化,从而增加了 Qstatin 及其衍生物的可及性。这项研究产生的机制见解对于设计针对野生型 HapR 的抑制剂仍然非常重要。

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