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(E)-β-法尼烯类似物与杂环化合物对蚜虫气味结合蛋白的分子构象依赖性结合模式的计算研究

Computational investigation of the molecular conformation-dependent binding mode of (E)-β-farnesene analogs with a heterocycle to aphid odorant-binding proteins.

作者信息

Du Shaoqing, Yang Zhaokai, Qin Yaoguo, Wang Shanshan, Duan Hongxia, Yang Xinling

机构信息

Department of Applied Chemistry, College of Science, China Agricultural University, Beijing, 100193, China.

出版信息

J Mol Model. 2018 Feb 27;24(3):70. doi: 10.1007/s00894-018-3612-0.

Abstract

Odorant-binding proteins (OBPs) play an important role as ligand-transfer filters in olfactory recognition in insects. (E)-β-farnesene (EBF) is the main component of the aphid alarm pheromone and could keep aphids away from crops to prevent damage. Computational insight into the molecular binding mode of EBF analogs containing a heterocycle based on the structure of Megoura viciae OBP 3 (MvicOBP3) was obtained by molecular docking and molecular dynamics simulations. The results showed that high affinity EBF analogs substituted with an aromatic ring present a unique binding conformation in the surface cavity of MvicOBP3. A long EBF chain was located inside the cavity and was surrounded by many hydrophobic residues, while the substituted aromatic ring was exposed to the outside due to limitations from the formation of multiple hydrogen bonds. However, the low activity EBF analogs displayed an exactly inverted binding pose, with EBF loaded on the external side of the protein cavity. The affinity of the recently synthesized EBF analogs containing a triazine ring was evaluated in silico based on the binding modes described above and in vitro through fluorescence competitive binding assay reported later. Compound N1 not only showed a similar binding conformation to that of the high affinity analogs but was also found to have a much higher docking score and binding affinity than the other analogs. In addition, the docking score results correlated well with the predicted logP values for these EBF analogs, suggesting highly hydrophobic interactions between the protein and ligand. These studies provide an in silico screening model for the binding affinity of EBF analogs in order to guide their rational design based on aphid OBPs.

摘要

气味结合蛋白(OBPs)在昆虫嗅觉识别中作为配体转移过滤器发挥着重要作用。(E)-β-法尼烯(EBF)是蚜虫报警信息素的主要成分,可使蚜虫远离作物以防止损害。通过分子对接和分子动力学模拟,基于豌豆蚜OBP 3(MvicOBP3)的结构,对含杂环的EBF类似物的分子结合模式进行了计算洞察。结果表明,被芳香环取代的高亲和力EBF类似物在MvicOBP3的表面腔中呈现出独特的结合构象。一条长的EBF链位于腔内,并被许多疏水残基包围,而由于多个氢键形成的限制,取代的芳香环暴露于外部。然而,低活性的EBF类似物显示出完全相反的结合姿势,EBF负载在蛋白腔的外侧。基于上述结合模式,通过后来报道的荧光竞争结合试验,在计算机模拟中评估了最近合成的含三嗪环的EBF类似物的亲和力,并进行了体外评估。化合物N1不仅显示出与高亲和力类似物相似的结合构象,而且还发现其对接分数和结合亲和力比其他类似物高得多。此外,对接分数结果与这些EBF类似物的预测logP值相关性良好,表明蛋白与配体之间存在高度疏水相互作用。这些研究为EBF类似物的结合亲和力提供了一种计算机模拟筛选模型,以指导基于蚜虫OBPs的合理设计。

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