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Regulation by voltage and adenine nucleotides of a Ca2+-activated cation channel from hamster vomeronasal sensory neurons

机译:电压和腺嘌呤核苷酸从仓鼠犁鼻鼻感觉神经元的Ca 2 +激活的阳离子通道的调节。

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摘要

Bipolar sensory neurons within the vomeronasal organ (VNO) are thought to mediate the detection of pheromones in vertebrates. In the mouse, VNO neurons respond to pheromones with a rise in intracellular Ca2+ that accompanies a depolarization of the cell. Transduction of the pheromone appears to occur through the activation of a phosphatidylinositol signalling pathway, but the ion channels that respond to this signalling pathway have not been identified. In this report patch-clamp recording from hamster vomeronasal sensory neurons was used to identify second-messenger-gated channels that might play a role in transduction. The results demonstrate that VNO neurons show abundant expression of a Ca2+-activated non-selective (CaNS) cation channel. The CaNS channel does not discriminate between Na+ and K+ and has a slope conductance of 22 pS. Half-activation of the channel occurs at a Ca2+ concentration of 0.5 mm (at −80 mV). The probability of opening (Po) of the channel is further augmented at positive potentials, and shows an e-fold voltage dependence per 37 mV. The channel exhibits rapid rundown following patch excision with Po decreasing from near 1.0 to near 0. The adenine nucleotides ATP and cAMP block the channel with an apparent affinity of 3 and 42 μm, respectively (−80 mV). Both the activation of the channel by Ca2+ and the block of the channel by adenine nucleotides show a mild voltage dependence, which can be accounted for by the voltage dependence of Po. The properties of this channel make it a candidate to either directly mediate vomeronasal sensory transduction, or to amplify the primary sensory response.
机译:犁鼻器器官(VNO)中的双极感觉神经元被认为介导了脊椎动物信息素的检测。在小鼠中,VNO神经元对信息素产生反应,使细胞内Ca 2 + 升高,并伴随细胞去极化。信息素的转导似乎是通过磷脂酰肌醇信号通路的激活而发生的,但是尚未识别出响应该信号通路的离子通道。在该报告中,使用仓鼠犁鼻神经感觉神经元的膜片钳记录来识别可能在转导中起作用的第二信使门控通道。结果表明,VNO神经元显示Ca 2 +-激活的非选择性(CaNS)阳离子通道的大量表达。 CaNS通道无法区分Na + 和K + ,斜率电导为22 pS。通道的半激活发生在Ca 2 + 浓度为0.5 mm(-80 mV)时。在正电势下,通道打开的可能性(Po)进一步增加,并且每37 mV显示e倍电压依赖性。膜片切除后,通道展现出快速的流失,Po从大约1.0降低到接近0。腺嘌呤核苷酸ATP和cAMP分别以3和42μm的表观亲和力(-80 mV)阻断通道。 Ca 2 + 对通道的激活和腺嘌呤核苷酸对通道的阻滞都显示出轻微的电压依赖性,这可以通过Po的电压依赖性来解释。该通道的特性使其成为直接介导犁鼻感觉转导或放大主要感觉反应的候选者。

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