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Ca2+ stabilizes the membrane potential of moth olfactory receptor neurons at rest and is essential for their fast repolarization

机译:Ca2 +稳定了飞蛾嗅觉感受器神经元在静止时的膜电位,并且对于它们的快速复极化至关重要

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The role of Ca2+ in insect olfactory transduction was studied in the moth Spodoptera littoralis. Single sensillum recordings were made to investigate in vivo the role of sensillar Ca2+ on the electrophysiological properties of sex pheromone responsive olfactory receptor neurons (ORNs). Lowering the sensillar Ca2+ concentration to 2 x 10(-8) M increased ORN spontaneous firing activity and induced long bursts of action potentials (APs) superimposed on spontaneous negative deflections of the transepithelial potential. We inferred that Ca2+ stabilizes the membrane potential of ORNs, keeping the spontaneous firing activity at a low and regular level. Neither the amplitude and kinetics of the rising phase of sensillar potentials (SPs) recorded in response to pheromone stimuli nor the AP generation during stimulation depended on the extracellular Ca2+ concentration. Thus, extracellular Ca2+ is not absolutely necessary for ORN response. Partial inhibition of responses with a calmodulin antagonist, W-7, also indicates that intracellular Ca2+ contributes to the ORN response and suggests that Ca2+ release from internal stores is involved. In 2 x 10(-8) M Ca2+, the repolarization of the SP was delayed when compared with higher Ca2+ concentrations. Therefore, in contrast to depolarization, ORN repolarization depends on extracellular Ca2+. Ca2+-gated K+ channels identified from cultured ORNs with whole-cell recordings are good candidates to mediate ORN repolarization.
机译:在飞蛾斜纹夜蛾中研究了Ca2 +在昆虫嗅觉转导中的作用。制作了单个sensillum记录,以研究体内sensillar Ca2 +对性信息素反应性嗅觉受体神经元(ORNs)的电生理特性的作用。将感觉Ca2 +浓度降低至2 x 10(-8)M,可增加ORN自发放电活性,并引起长时间的动作电位(AP)爆发,叠加在跨上皮电位的自发负偏斜上。我们推断,Ca2 +可稳定ORN的膜电位,从而使自发放电活性保持在较低且规则的水平。响应信息素刺激而记录的感觉电位(SPs)上升阶段的幅度和动力学,以及刺激过程中AP的产生均不依赖于细胞外Ca2 +浓度。因此,细胞外Ca2 +对于ORN反应并不是绝对必要的。钙调蛋白拮抗剂W-7对反应的部分抑制还表明,细胞内Ca2 +有助于ORN反应,并暗示涉及Ca2 +从内部储存区的释放。在2 x 10(-8)M Ca2 +中,与较高的Ca2 +浓度相比,SP的重新极化被延迟了。因此,与去极化相反,ORN的重新极化依赖于细胞外Ca2 +。从具有完整细胞记录的培养ORN中鉴定出的Ca2 +门控K +通道是介导ORN重极化的良好候选者。

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