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首页> 外文期刊>Insect Molecular Biology >Prediction of the key binding site of odorant-binding protein of Holotrichia oblita Faldermann (Coleoptera: Scarabaeida).
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Prediction of the key binding site of odorant-binding protein of Holotrichia oblita Faldermann (Coleoptera: Scarabaeida).

机译:预测Holotrichia oblita Faldermann(鞘翅目:Scarabaeida)的气味结合蛋白的关键结合位点。

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The scarab beetle Holotrichia oblita Faldermann (Coleoptera: Scarabaeidae) is a predominant underground pest in the northern parts of China, and its larvae (grubs) cause great economic losses because of its wide range of host plants and covert habitats. Environmentally friendly strategies for controlling adults would have novel and broad potential applications. One potential pest management measure is the regulation of olfactory chemoreception to control target insect pests. In the process of olfactory recognition, odorant-binding proteins (OBPs) are believed to carry hydrophobic odorants from the environment to the surface of olfactory receptor neurons. To obtain a better understanding of the relationship between OBP structures and their ligands, homology modelling and molecular docking have been conducted on the interaction between HoblOBP1 and hexyl benzoate in the present study. Based on the results, site-directed mutagenesis and binding experiments were combined to describe the binding sites of HoblOBP1 and to explore its ligand-binding mechanism. After homology modelling of HoblOBP1, it was found that the three-dimensional structure of HoblOBP1 consists of six alpha -helices and three disulphide bridges that connect the helices, and the hydrophobic pockets are both composed of five helices. Based on the docking study, we found that van der Waals interactions and hydrophobic interactions are both important in the bonding between HoblOBP1 and hexyl benzoate. Intramolecular residues formed the hydrogen bonds in the C terminus of the protein and the bonds are crucial for the ligand-binding specificity. Finally, MET48, ILE80 and TYR111 are binding sites predicted for HoblOBP1. Using site-directed mutagenesis and fluorescence assays, it was found that ligands could not be recognized by mutant of Tyr111. A possible explanation is that the compound could not be recognized by the mutant, and remains in the binding cavity because of the loss of the intramolecular hydrogen bonding that acts as a holder. So we believe that Tyr111 of HoblOBP1 is a key binding site. We also believe that Ile80A is a very important binding site, especially to some ligands.
机译:金龟子甲虫Holotrichia oblita Faldermann(鞘翅目:Scarabaeidae)是中国北部的主要地下害虫,由于其寄主植物和隐蔽的生境广泛,其幼虫(g)造成了巨大的经济损失。控制成年人的环境友好战略将具有新颖而广泛的潜在应用。一种潜在的害虫治理措施是调节嗅觉化学感受以控制目标害虫。在嗅觉识别的过程中,据认为,气味结合蛋白(OBP)会将疏水性气味从环境携带到嗅觉受体神经元的表面。为了更好地了解OBP结构与其配体之间的关系,本研究对HoblOBP1与苯甲酸己酯之间的相互作用进行了同源建模和分子对接。根据结果​​,结合定点诱变和结合实验来描述HoblOBP1的结合位点,并探索其配体结合机制。在对HoblOBP1进行同源建模后,发现HoblOBP1的三维结构由六个α-螺旋和连接螺旋的三个二硫桥组成,疏水口袋均由五个螺旋组成。根据对接研究,我们发现范德华相互作用和疏水相互作用在HoblOBP1和苯甲酸己酯之间的键合中都很重要。分子内残基在蛋白质的C末端形成氢键,并且该键对于配体结合特异性至关重要。最后,MET48,ILE80和TYR111是预测的HoblOBP1结合位点。使用定点诱变和荧光测定,发现配体不能被Tyr111突变体识别。一个可能的解释是该化合物不能被突变体识别,并且由于充当保持器的分子内氢键的丢失而保留在结合腔中。因此,我们认为HoblOBP1的Tyr111是关键的结合位点。我们还认为,Ile80A是一个非常重要的结合位点,尤其是对某些配体而言。

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