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Subunit Contributions to Insect Olfactory Receptor Function: Channel Block and Odorant Recognition

机译:亚基对昆虫嗅觉受体功能的贡献:通道阻滞和气味识别。

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摘要

Insect olfactory receptors are heteromeric ligand-gated ion channels composed of at least one common subunit (Orco) and at least one subunit that confers odorant specificity. Little is known about how individual subunits contribute to the structure and function of the olfactory receptor complex. We expressed insect olfactory receptors in Xenopus oocytes to investigate 2 functional features, ion channel block and odorant recognition. The sensitivity of Drosophila olfactory receptors to inhibition by ruthenium red, a cation channel blocker, varied widely when different specificity subunits were present, suggesting that the specificity subunits contribute to the structure of the ion pore. Olfactory receptors formed by DmelOr35a and Orco subunits from several different species displayed highly similar odorant response profiles, suggesting that the Orco subunit does not contribute to the structure of the odorant-binding site. We further explored odorant recognition by conducting a detailed examination of the odorant specificity DmelOr67a + DmelOrco, a receptor that responds to aromatic structures. This screen identified agonists, partial agonists, and an antagonist of DmelOr67a + DmelOrco. Our findings favor specific subunit arrangements within the olfactory receptor complex and provide a preliminary odorophore for an olfactory receptor, offering a useful foundation for future exploration of insect olfactory receptor structure.
机译:昆虫嗅觉受体是异源配体门控的离子通道,由至少一个共同的亚基(Orco)和至少一个赋予加味剂特异性的亚基组成。关于单个亚基如何对嗅觉受体复合物的结构和功能做出贡献的了解甚少。我们在非洲爪蟾卵母细胞中表达昆虫嗅觉受体,以研究2个功能特征,离子通道阻滞和气味识别。当存在不同的特异性亚基时,果蝇嗅觉受体对钌红(阳离子通道阻滞剂)抑制的敏感性差异很大,这表明特异性亚基有助于离子孔的结构。由来自几个不同物种的Dmel Or35a和Orco亚基形成的嗅觉受体显示出高度相似的气味响应曲线,这表明Orco亚基对气味结合位点的结构没有贡献。我们通过对气味特异性Dmel Or67a + Dmel Orco(对芳香族结构有响应的受体)进行详细检查,进一步探索了气味识别。该屏幕确定了Dmel Or67a + Dmel Orco的激动剂,部分激动剂和拮抗剂。我们的发现支持嗅觉受体复合物中的特定亚基排列,并为嗅觉受体提供初步的气味载体,为昆虫嗅觉受体结构的未来探索提供了有用的基础。

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