Perera Inoka C, Lee Yong-Hwan, Wilkinson Steven P, Grove Anne
Department of Biological Sciences, Louisiana State University, Baton Rouge, 70803, USA.
J Mol Biol. 2009 Jul 31;390(5):1019-29. doi: 10.1016/j.jmb.2009.06.002. Epub 2009 Jun 6.
Members of the multiple antibiotic resistance regulator (MarR) family control gene expression in a variety of metabolic processes in bacteria and archaea. Hypothetical uricase regulator (HucR), which belongs to the ligand-responsive branch of the MarR family, regulates uricase expression in Deinococcus radiodurans by binding a shared promoter region between uricase and HucR genes. We show here that HucR responds only to urate and, to a lesser extent, to xanthine by attenuated DNA binding, compared to other intermediates of purine degradation. Using molecular-dynamics-guided mutational analysis, we identified the ligand-binding site in HucR. Electrophoretic mobility shift assays and intrinsic Trp fluorescence have identified W20 from the N-terminal helix and R80 from helix 3, which serves as a scaffold for the DNA recognition helix, as being essential for ligand binding. Using structural data combined with in silico and in vitro analyses, we propose a mechanism for the attenuation of DNA binding in which a conformational change initiated by charge repulsion due to a bound ligand propagates to DNA recognition helices. This mechanism may apply generally to MarR homologs that bind anionic phenolic ligands.
多重抗生素抗性调控因子(MarR)家族的成员控制着细菌和古细菌各种代谢过程中的基因表达。假定尿酸酶调控因子(HucR)属于MarR家族的配体响应分支,它通过结合尿酸酶基因和HucR基因之间的共享启动子区域来调控耐辐射球菌中的尿酸酶表达。我们在此表明,与嘌呤降解的其他中间产物相比,HucR仅对尿酸有反应,并且在较小程度上对黄嘌呤有反应,其通过减弱DNA结合来实现。利用分子动力学引导的突变分析,我们确定了HucR中的配体结合位点。电泳迁移率变动分析和内在色氨酸荧光表明,来自N端螺旋的W20和来自螺旋3的R80(其作为DNA识别螺旋的支架)对于配体结合至关重要。结合结构数据以及计算机模拟和体外分析,我们提出了一种DNA结合减弱的机制,即由于结合的配体引起的电荷排斥引发的构象变化传播到DNA识别螺旋。这种机制可能普遍适用于结合阴离子酚类配体的MarR同源物。