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Insect Olfactory Receptor Complex Functions as a Ligand-gated Ionotropic Channel

机译:昆虫嗅觉受体复合物作为配体门控离子通道

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摘要

In general, each insect olfactory sensory neuron expresses one member of the olfactory receptor (OR) gene family along with the highly conserved Or83b co-receptor, and the two ORs form a heteromeric complex to function as a chemosensor. Here we provide evidence that heteromeric insect ORs comprise a novel class of ligand-activated nonselec-tive cation channels. Heterologous cells expressing silk moth, fruit fly, or mosquito heteromeric OR complexes exhibited extracellular calcium influx and cation-nonselective ion conductance upon odorant or pheromone stimulation. G protein-mediated signaling was negligible in producing the current elicited by ligand activation of insect ORs. Direct evidence for ligand-gated channels was obtained by outside-out patch-clamp single-channel recording of Xenopus oocyte and HEK293T cell membranes expressing insect OR complexes. The olfactory signal transduction mechanism in insects is clearly distinct from that in vertebrates and appears to be a unique strategy that insects have acquired to respond to the olfactory environment.
机译:通常,每个昆虫的嗅觉感觉神经元都与高度保守的Or83b协同受体一起表达嗅觉受体(OR)基因家族的一个成员,并且两个OR形成异聚复合物以起化学传感器的作用。在这里,我们提供证据表明异源昆虫OR包含一类新型的配体激活的非选择性阳离子通道。表达蚕蛾,果蝇或蚊子异源OR复合物的异源细胞在刺激气味剂或信息素后表现出细胞外钙内流和阳离子非选择性离子电导率。 G蛋白介导的信号传导在产生由昆虫ORs的配体活化引起的电流中可以忽略不计。配体门控通道的直接证据是通过非洲爪蟾卵母细胞和表达昆虫OR复合体的HEK293T细胞膜的外部-外部膜片钳单通道记录获得的。昆虫中的嗅觉信号转导机制与脊椎动物中的明显不同,并且似乎是昆虫获得的对嗅觉环境作出反应的独特策略。

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