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Odorant receptors of Drosophila are sensitive to the molecular volume of odorants

机译:果蝇的气味受体对气味剂的分子量敏感

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摘要

Which properties of a molecule define its odor? This is a basic yet unanswered question regarding the olfactory system. The olfactory system of Drosophila has a repertoire of approximately 60 odorant receptors. Molecules bind to odorant receptors with different affinities and activate them with different efficacies, thus providing a combinatorial code that identifies odorants. We hypothesized that the binding affinity of an odorant-receptor pair is affected by their relative sizes. The maximum affinity can be attained when the molecular volume of an odorant matches the volume of the binding pocket. The affinity drops to zero when the sizes are too different, thus obscuring the effects of other molecular properties. We developed a mathematical formulation of this hypothesis and verified it using Drosophila data. We also predicted the volume and structural flexibility of the binding site of each odorant receptor; these features significantly differ between odorant receptors. The differences in the volumes and structural flexibilities of different odorant receptor binding sites may explain the difference in the scents of similar molecules with different sizes.
机译:分子的哪个性质限定了其气味?这是关于嗅觉系统的基本尚未答复的问题。果蝇的嗅觉系统具有大约60个气味受体的曲目。分子与具有不同亲和力的气味受体结合并用不同的疗效激活它们,从而提供识别出气味剂的组合代码。我们假设气味受体对的结合亲和力受其相对尺寸的影响。当气味剂的分子量与装订口袋的体积相匹配时,可以获得最大亲和力。当大小太差时,亲和力滴到零,从而遮挡了其他分子特性的影响。我们开发了这种假设的数学制定,并使用果蝇数据验证了它。我们还预测了每种气味受体的结合位点的体积和结构灵活性;这些特征在恶臭受体之间具有显着差异。不同气味受体结合位点的体积和结构灵活性的差异可以解释具有不同尺寸的类似分子的气味的差异。

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