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Amino Acid Residues Contributing to Function of the Heteromeric Insect Olfactory Receptor Complex

机译:有助于异源昆虫嗅觉感受器复合体功能的氨基酸残基

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摘要

Olfactory receptors (Ors) convert chemical signals—the binding of odors and pheromones—to electrical signals through the depolarization of olfactory sensory neurons. Vertebrates Ors are G-protein-coupled receptors, stimulated by odors to produce intracellular second messengers that gate ion channels. Insect Ors are a heteromultimeric complex of unknown stoichiometry of two seven transmembrane domain proteins with no sequence similarity to and the opposite membrane topology of G-protein-coupled receptors. The functional insect Or comprises an odor- or pheromone-specific Or subunit and the Orco co-receptor, which is highly conserved in all insect species. The insect Or-Orco complex has been proposed to function as a novel type of ligand-gated nonselective cation channel possibly modulated by G-proteins. However, the Or-Orco proteins lack homology to any known family of ion channel and lack known functional domains. Therefore, the mechanisms by which odors activate the Or-Orco complex and how ions permeate this complex remain unknown. To begin to address the relationship between Or-Orco structure and function, we performed site-directed mutagenesis of all 83 conserved Glu, Asp, or Tyr residues in the silkmoth BmOr-1-Orco pheromone receptor complex and measured functional properties of mutant channels expressed in Xenopus oocytes. 13 of 83 mutations in BmOr-1 and BmOrco altered the reversal potential and rectification index of the BmOr-1-Orco complex. Three of the 13 amino acids (D299 and E356 in BmOr-1 and Y464 in BmOrco) altered both current-voltage relationships and K+ selectivity. We introduced the homologous Orco Y464 residue into Drosophila Orco in vivo, and observed variable effects on spontaneous and evoked action potentials in olfactory neurons that depended on the particular Or-Orco complex examined. Our results provide evidence that a subset of conserved Glu, Asp and Tyr residues in both subunits are essential for channel activity of the heteromeric insect Or-Orco complex.
机译:嗅觉感受器(Ors)通过嗅觉感觉神经元去极化将化学信号(气味和信息素的结合)转换为电信号。脊椎动物Ors是G蛋白偶联受体,受气味刺激产生细胞内第二信使,该信使控制离子通道。昆虫Ors是两个七个跨膜域蛋白的化学计量未知的异源多聚体复合物,与G蛋白偶联受体的序列无相似性,并且膜拓扑相反。功能性昆虫Or包含特定于气味或信息素的Or亚基和Orco协同受体,在所有昆虫物种中其高度保守。已经提出昆虫Or-Orco复合物起可能由G蛋白调节的新型配体门控非选择性阳离子通道的作用。但是,Or-Orco蛋白缺乏与任何已知离子通道家族的同源性,也缺乏已知功能域。因此,气味激活Or-Orco配合物的机制以及离子如何渗透该配合物的机制仍然未知。为了解决Or-Orco结构与功能之间的关系,我们对蚕蛾BmOr-1-Orco信息素受体复合物中的所有83个保守Glu,Asp或Tyr残基进行了定点诱变,并测定了表达的突变通道的功能特性在非洲爪蟾卵母细胞中。 BmOr-1和BmOrco的83个突变中的13个改变了BmOr-1-Orco复合物的逆转潜力和纠正指数。 13个氨基酸中的三个(BmOr-1中的D299和E356,BmOrco中的Y464)改变了电流-电压关系和K +选择性。我们在体内将同源的Orco Y464残基引入果蝇Orco,并观察了对嗅觉神经元中自发和诱发动作电位的不同影响,这取决于所检查的特定Or-Orco复合物。我们的结果提供了证据,表明两个亚基中保守的Glu,Asp和Tyr残基的一部分对于异源昆虫Or-Orco复合物的通道活性至关重要。

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