Biointeractions and Crop Protection Department, Rothamsted Research, Harpenden, Hertfordshire, UK.
School of Chemistry, University of Nottingham, Nottingham, UK.
J Biomol Struct Dyn. 2023 May;41(8):3647-3658. doi: 10.1080/07391102.2022.2053743. Epub 2022 Mar 30.
Odorant receptors (OR) play a critical role in signal transduction and olfactory recognition in insects. Unfortunately, insect ORs are difficult to express and purify, and limited structural data are available. Computational methods were used to predict models for aphid ORs, and binding interactions with aphid pheromones and other semiochemicals were investigated. Previously functionally characterised ORs from the pea aphid, , ApisOR4 and ApisOR5, were screened against functional ligands. ApisOR5 had a defined binding site, and had predicted interactions with the aphid alarm pheromone, (βfarnesene. ApisOR4 had multiple distinct binding sites and showed broad tuning to multiple odorants. Screening of six other highly conserved ORs showed some interactions and potential enantiomeric discrimination between the aphid sex pheromone components (4a,7,7a)-nepetalactone and (1,4a,7,7a)-nepetalactol. These results indicate that specific binding sites may be more critical to understanding olfactory activity of ligands and ORs than kinetic data, and greater knowledge of the method of action of ORs is required.Communicated by Ramaswamy H. Sarma.
气味受体(OR)在昆虫的信号转导和嗅觉识别中起着关键作用。不幸的是,昆虫 OR 难以表达和纯化,并且可用的结构数据有限。使用计算方法预测了蚜虫 OR 的模型,并研究了与蚜虫信息素和其他半化学物质的结合相互作用。以前从豌豆蚜中功能表征的 OR , ,ApisOR4 和 ApisOR5 ,针对功能配体进行了筛选。ApisOR5 具有定义的结合位点,并与蚜虫警报信息素(β-法呢烯)具有预测的相互作用。ApisOR4 具有多个不同的结合位点,并对多种气味具有广泛的调谐。对其他六个高度保守的 OR 的筛选显示出一些相互作用以及在蚜虫性信息素成分(4a,7,7a)-新薄荷酮和(1,4a,7,7a)-新薄荷醇之间的潜在对映体选择性。这些结果表明,与动力学数据相比,特定的结合位点可能对理解配体和 OR 的嗅觉活性更为关键,并且需要更多地了解 OR 的作用方式。由 Ramaswamy H. Sarma 传达。