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四种来自[鞘翅目:瓢虫科]的富含触角的气味结合蛋白的结合亲和力特性分析

Binding Affinity Characterization of Four Antennae-Enriched Odorant-Binding Proteins From (Coleoptera: Coccinellidae).

作者信息

Qu Cheng, Yang Zhao-Kai, Wang Su, Zhao Hai-Peng, Li Feng-Qi, Yang Xin-Ling, Luo Chen

机构信息

Institute of Plant Protection, Beijing Academy of Agriculture and Forestry Sciences, Beijing, China.

Department of Applied Chemistry, Innovation Center of Pesticide Research, China Agricultural University, Beijing, China.

出版信息

Front Physiol. 2022 Mar 8;13:829766. doi: 10.3389/fphys.2022.829766. eCollection 2022.

Abstract

is an important natural enemy that consumes many agricultural and forestry pests. It relies on a sensitive olfactory system to find prey and mates. Odorant-binding proteins (OBPs) as the first-step of recognizing volatiles, transport odors through sensillum lymph to odorant receptors (ORs). However, little is known about the molecular mechanisms of olfaction. In this study, four antenna specific OBP genes, , , , and , were bacterially expressed and the binding features of the four recombinant proteins to 40 substances were investigated using fluorescence competitive binding assays. Three-dimensional structure modeling and molecular docking analysis predicted the binding sites between HaxyOBPs and candidate volatiles. Developmental expression analyses showed that the four HaxyOBP genes displayed a variety of expression patterns at different development stages. The expression levels of and were higher in the adult stage than in the other developmental stages, and was significantly transcriptionally enriched in adult stage. Ligand-binding analysis demonstrated that HaxyOBP3 and HaxyOBP12 only combined with two compounds, β-ionone and p-anisaldehyde. HaxyOBP5 protein displayed binding affinities with methyl salicylate, β-ionone, and p-anisaldehyde (K = 18.15, 11.71, and 13.45 μM). HaxyOBP15 protein had a broad binding profile with (E)-β-farnesene, β-ionone, α-ionone, geranyl acetate, nonyl aldehyde, dihydro-β-ionone, and linalyl acetate (K = 4.33-31.01 μM), and hydrophobic interactions played a key role in the binding of HaxyOBP15 to these substances according to molecular docking. Taken together, HaxyOBP15 exhibited a broader ligand-binding spectrum and a higher expression in adult stage than HaxyOBP3, 5, and 12, indicating HaxyOBP15 may play a greater role in binding volatiles than other three HaxyOBPs. The results will increase our understanding of the molecular mechanism of olfaction and may also result in new management strategies (attractants/repellents) that increase the biological control efficacy of .

摘要

是一种重要的天敌,以许多农林害虫为食。它依靠灵敏的嗅觉系统来寻找猎物和配偶。气味结合蛋白(OBPs)作为识别挥发性物质的第一步,通过感器淋巴将气味传递给气味受体(ORs)。然而,关于嗅觉的分子机制知之甚少。在本研究中,四个触角特异性OBP基因, 、 、 和 ,进行了细菌表达,并使用荧光竞争结合试验研究了这四种重组蛋白与40种物质的结合特性。三维结构建模和分子对接分析预测了HaxyOBPs与候选挥发性物质之间的结合位点。发育表达分析表明,这四个HaxyOBP基因在不同发育阶段表现出多种表达模式。 和 在成虫阶段的表达水平高于其他发育阶段, 在成虫阶段转录显著富集。配体结合分析表明,HaxyOBP3和HaxyOBP12仅与两种化合物β-紫罗兰酮和对茴香醛结合。HaxyOBP5蛋白与水杨酸甲酯、β-紫罗兰酮和对茴香醛表现出结合亲和力(K = 18.15、11.71和13.45 μM)。HaxyOBP15蛋白与(E)-β-法尼烯、β-紫罗兰酮、α-紫罗兰酮、乙酸香叶酯、壬醛、二氢-β-紫罗兰酮和乙酸芳樟酯具有广泛的结合谱(K = 4.33 - 31.01 μM),根据分子对接,疏水相互作用在HaxyOBP15与这些物质的结合中起关键作用。综上所述,与HaxyOBP3、5和12相比,HaxyOBP15表现出更广泛的配体结合谱和在成虫阶段更高的表达,表明HaxyOBP15在结合挥发性物质方面可能比其他三种HaxyOBPs发挥更大的作用。这些结果将增加我们对嗅觉分子机制的理解,也可能导致新的管理策略(引诱剂/驱避剂),提高 的生物防治效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4505/8957989/067a7f065b83/fphys-13-829766-g001.jpg

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