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首页> 外文期刊>Journal of Molecular Biology >Electron Crystallography reveals plasticity within the drug binding site of the small multidrug transporter EmrE
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Electron Crystallography reveals plasticity within the drug binding site of the small multidrug transporter EmrE

机译:电子晶体学显示小型多药转运蛋白EmrE的药物结合位点内具有可塑性

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摘要

EmrE is a Small Multidrug Resistance transporter (SMR) family member that mediates counter transport of protons and hydrophobic cationic drugs such as tetraphenylphosphonium (TPP+), ethidium, propidium and dequalinium. It is thought that the selectivity of the drug binding site in EmrE is defined by two negatively charged glutamate residues within a hydrophobic pocket formed from six of the alpha-helices, three from each monomer of the asymmetric EmrE homodimer. It is not apparent how such a binding pocket accommodates drugs of various sizes and shapes or whether the conformational changes that occur upon drug binding are identical for drugs of diverse chemical nature. Here, using electron cryomicroscopy of EmrE two-dimensional crystals we have determined projection structures of EmrE bound to three structurally different planar drugs, ethidium, propidium and dequalinium. Using image analysis and rigorous comparisons between these density maps and the density maps of the ligand-free and TPP+-bound forms of EmrE, we identify regions within the transporter that adapt differentially depending on the type of ligand bound. We show that all three planar drugs bind at the same pocket within the protein as TPP+. Furthermore, our analysis indicates that, while retaining the overall fold of the protein, binding of the planar drugs is accompanied by small rearrangements of the transmembrane domains that are different to those that occur when TPP+ binds. The regions in the EmrE dimer that are remodelled surround the drug binding site and include transmembrane domains from both monomers. (C) 2008 Elsevier Ltd. All rights reserved.
机译:EmrE是一个小型多药耐药转运蛋白(SMR)家族成员,可介导质子和疏水性阳离子药物(如四苯基phosph(TPP +),乙锭,丙锭和de等)的逆向转运。据认为,EmrE中药物结合位点的选择性由疏水口袋中的两个带负电荷的谷氨酸残基定义,该疏水口袋由六个α-螺旋形成,三个来自不对称EmrE同型二聚体的每个单体。尚不清楚这样的结合袋如何容纳各种大小和形状的药物,或者对于各种化学性质的药物而言,在结合药物时发生的构象变化是否相同。在这里,使用EmrE二维晶体的电子低温显微术,我们确定了EmrE的投影结构,该结构与三种结构上不同的平面药物(乙锭,prop和and)结合。使用图像分析和这些密度图与EmrE的无配体和TPP +结合形式的密度图之间的严格比较,我们确定了转运蛋白中根据结合的配体类型差异适应的区域。我们显示,所有三种平面药物都与TPP +结合在蛋白质的同一口袋中。此外,我们的分析表明,在保留蛋白质整体折叠的同时,平面药物的结合伴随着跨膜结构域的小重排,这与TPP +结合时发生的重排不同。 EmrE二聚体中被重塑的区域围绕药物结合位点,并包括来自两个单体的跨膜结构域。 (C)2008 Elsevier Ltd.保留所有权利。

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