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Selectivity and ligand-based molecular modeling of an odorant-binding protein from the leaf beetle Ambrostoma quadriimpressum (Coleoptera: Chrysomelidae) in relation to habitat-related volatiles

机译:甲虫四叶草(Coleoptera:Chrysomelidae)的气味结合蛋白相对于栖息地相关挥发物的选择性和基于配体的分子建模

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摘要

In this study, the most abundant and antenna-specific odorant-binding protein (OBP) of the elm pest A. quadriimpressum, AquaOBP4, was expressed and purified. The selectivity of AquaOBP4 was investigated by screening against a panel of 40 habitat-relevant compounds. Based on the obtained results, a homologous model of AquaOBP4 was established. This model indicated that AquaOBP4 is highly homologous to DmelOBP LUSH and includes two main binding sites. A docking analysis showed that four of five active ligands bound at Site 1, whereas the other ligand was situated at Site 2. Furthermore, new ligands were docked in the model, and the results of fluorescence-based binding assays of these compounds were highly consistent with the binding conformation and binding affinity predicted by our model. Additionally, three binding odorants derived from elm leaves elicited a strong electroantennogram response and exerted a significant attractive effect on adult A. quadriimpressum. All of the results showed that AquaOBP4 is likely linked to the foraging behavior of A. quadriimpressum. This study provides a new reliable tool for future large-scale compound screenings and revealed several functional chemicals that might aid the development of a better pest management approach for A. quadriimpressum.
机译:在这项研究中,表达和纯化了榆树害虫A.quadriimpressum的最丰富且触角特异性的气味结合蛋白(OBP)AquaOBP4。通过对一组40种与栖息地相关的化合物进行筛选,研究了AquaOBP4的选择性。基于获得的结果,建立了AquaOBP4的同源模型。该模型表明,AquaOBP4与DmelOBP LUSH高度同源,并包含两个主要结合位点。对接分析表明,五个活性配体中的四个与位点1结合,而另一个配体位于位点2。此外,新的配体在模型中对接,这些化合物的基于荧光的结合测定结果高度一致与我们的模型预测的结合构象和结合​​亲和力。此外,来自榆树叶的三种结合香精引起强烈的电触电图反应,并且对成年A.quariimpressum具有显着的吸引力。所有的结果表明,AquaOBP4可能与四叶曲霉的觅食行为有关。这项研究为将来的大规模化合物筛选提供了一种新的可靠工具,并揭示了几种功能性化学物质,这些化学物质可能有助于开发一种更好的害虫管理方法。

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