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首页> 外文期刊>Archives of Biochemistry and Biophysics >Gypsy moth pheromone-binding protein-ligand interactions: pH profiles and simulations as tools for detecting polar interactions
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Gypsy moth pheromone-binding protein-ligand interactions: pH profiles and simulations as tools for detecting polar interactions

机译:吉普赛蛾信息素结合蛋白-配体相互作用:pH谱和模拟作为检测极性相互作用的工具

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Pheromone-binding proteins (PBPs) are believed to control diffusion of pheromones in sensory hairs of insects. The interactions of gypsy moth (Lymantria dispar) PBPs with the sex attractant pheromone, (+)-Disparlure ((7R,8S)-epoxy-2-methyloctadecane), and the enantioselectivity of recognition are not completely understood. Enantioselectivity is important for L dispar, because ()-disparlure cancels the attraction of (+)-disparlure, so these moths use enantiopure (+)-disparlure for communication. We performed docking simulations of the protonated homology PBP models with the enantiomers of disparlure, 5-oxadisparlure, 10-oxadisparlure, 5-thiadisparlure and 10-thiadisparlure, together with a binding assay experiment, in which the pH profiles for the PBP-ligand combinations were surveyed. The molecular simulations revealed different amino acid residues in the binding sites, movement of specific amino acid residues at certain pH values, distinct amino acid-ligand interactions (side chain donors/acceptors, H-arene bonding, backbone donors/acceptors) and differences in the conformations of each protein-ligand complex. The pK(a) values obtained from the binding experiment and the results from the molecular simulations served as tools for detecting polar interactions between the PBPs and ligands. The differences found between structures docked with ligand enantiomers reveal the enantioselectivity of the gypsy moth PBP5 towards the pheromone and its antipode, as well as towards enantiomers of pheromone analogs with heteroatom substitutions. (C) 2016 Elsevier Inc. All rights reserved.
机译:据信信息素结合蛋白(PBPs)可控制信息素在昆虫感官毛发中的扩散。吉普赛蛾(Lymantria dispar)PBP与性引诱剂信息素,(+)-Disparlure((7R,8S)-环氧-2-甲基十八烷)的相互作用以及识别的对映选择性尚不完全清楚。对映选择性对于L dispar很重要,因为()-disparlure消除了(+)-disparlure的吸引力,因此这些飞蛾使用对映纯(+)-disparlure进行交流。我们对质子化同源PBP模型与Disparlure,5-oxadisparlure,10-oxadisparlure,5-thiadisparlure和10-thiadisparlure的对映体进行了对接模拟,并进行了结合测定实验,其中PBP-配体组合的pH值被调查。分子模拟揭示了结合位点上的不同氨基酸残基,特定氨基酸残基在某些pH值下的运动,独特的氨基酸-配体相互作用(侧链供体/受体,H-芳烃键,主链供体/受体)以及它们之间的差异。每个蛋白质-配体复合物的构象。从结合实验获得的pK(a)值和分子模拟的结果可作为检测PBP与配体之间极性相互作用的工具。在与配体对映异构体对接的结构之间发现的差异揭示了吉普赛蛾PBP5对信息素及其对映体以及对具有杂原子取代的信息素类似物的对映异构体的对映选择性。 (C)2016 Elsevier Inc.保留所有权利。

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