School of Biological Sciences, University of Auckland, Auckland, New Zealand.
PLoS One. 2013 Jul 23;8(7):e70218. doi: 10.1371/journal.pone.0070218. Print 2013.
Insect odorant receptors function as heteromeric odorant-gated cation channels comprising a conventional odorant-sensitive tuning receptor, and a conserved co-receptor (Orco). An Orco agonist, VUAA1, is able to activate both heteromeric and homomeric Orco-containing channels. Very little is known about specific residues in Orco that contribute to cation permeability and gating. We investigated the importance of two conserved Asp residues, one in each of transmembrane domains 5 and 7, for channel function by mutagenesis. Drosophila melanogaster Orco and its substitution mutants were expressed in HEK cells and VUAA1-stimulated channel activity was determined by Ca(2+) influx and whole-cell patch clamp electrophysiology. Substitution of D466 in transmembrane 7 with amino acids other than glutamic acid resulted in a substantial reduction in channel activity. The D466E Orco substitution mutant was ~2 times more sensitive to VUAA1. The permeability of the D466E Orco mutant to cations was unchanged relative to wild-type Orco. When D466E Orco is co-expressed with a conventional tuning odorant receptor, the heteromeric complex also shows increased sensitivity to an odorant. Thus, the effect of the D466E mutation is not specific to VUAA1 agonism or dependent on homomeric Orco assembly. We suggest the gain-of-activation characteristic of the D466E mutant identifies an amino acid that is likely to be important for activation of both heteromeric and homomeric insect odorant receptor channels.
昆虫气味受体作为异源二聚体气味门控阳离子通道发挥作用,包含一个传统的气味敏感调谐受体和一个保守的共受体 (Orco)。Orco 激动剂 VUAA1 能够激活异源二聚体和同源二聚体含 Orco 的通道。对于 Orco 中有助于阳离子通透性和门控的特定残基,我们知之甚少。我们通过突变研究了两个保守的天冬氨酸残基(每个跨膜域 5 和 7 中一个)在通道功能中的重要性。在 HEK 细胞中表达果蝇 Orco 及其取代突变体,并通过 Ca(2+)内流和全细胞贴附式膜片钳电生理学测定 VUAA1 刺激的通道活性。用除谷氨酸以外的氨基酸取代跨膜 7 中的 D466 导致通道活性显著降低。D466E Orco 取代突变体对 VUAA1 的敏感性约增加 2 倍。与野生型 Orco 相比,D466E Orco 突变体对阳离子的通透性没有改变。当 D466E Orco 与常规调谐气味受体共表达时,异源二聚体复合物对气味也表现出更高的敏感性。因此,D466E 突变的作用不仅特异性地针对 VUAA1 激动作用,也不依赖于同源二聚体 Orco 组装。我们认为 D466E 突变体的激活增益特性确定了一个对于激活异源二聚体和同源二聚体昆虫气味受体通道都很重要的氨基酸。