首页> 美国卫生研究院文献>The Journal of General Physiology >Single-Channel Properties of Recombinant Acid-Sensitive Ion Channels Formed by the Subunits Asic2 and Asic3 from Dorsal Root Ganglion Neurons Expressed in Xenopus Oocytes
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Single-Channel Properties of Recombinant Acid-Sensitive Ion Channels Formed by the Subunits Asic2 and Asic3 from Dorsal Root Ganglion Neurons Expressed in Xenopus Oocytes

机译:由非洲爪蟾卵母细胞表达的背根神经节神经元亚基Asic2和Asic3组成的重组酸敏感离子通道的单通道特性。

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摘要

The acid-sensitive ion channels known as ASIC are gated by external protons. A set of these channels is expressed in dorsal root ganglion neurons where they may participate in the transduction of mechanical and nociceptive stimuli. Here, we have examined the single-channel properties of channels formed by the subunits ASIC2 and ASIC3 expressed in Xenopus oocytes using outside-out patches. The mean single-channel current-voltage relationship is linear with a slope conductance of 18 pS between −80 and −40 mV in 150 mM Na+ outside and 150 mM K+ inside the patch pipet. The selectivity for monovalent cations has the sequence Na+ > Li+ > K+. Divalent cations such as Ca2+ do not permeate, but instead block the channel when applied to the extracellular side. External protons increase the probability of channels being open to a maximum of 0.8 with an EC50 of 16 ± 4 μM and a Hill coefficient of 2.7 ± 0.3, whereas the mean single-channel current amplitude is independent of external pH. Analysis of the kinetics of single channels indicates the presence of at least four modes of activity (Mod1 to Mod4) in addition to an inactivated state. Three of the modes exhibit distinct kinetics, and can be unambiguously identified on the basis of open probability (PoMod1 = 0.5 ± 0.05; PoMod2 > 0.9 ± 0.05; PoMod3 < 0.1). Mode 4, which has a Po in the range of 0.5–0.8, may constitute a distinct mode or alternatively, it represents transitions between the other three modes of activity. Increasing [H+]o increases the frequency of entering the modes with high Po (modes 1, 2, and 4) and the time the channel spends in the modes with high activity.
机译:对酸敏感的离子通道(称为ASIC)由外部质子控制。这些通道中的一组在背根神经节神经元中表达,它们可能参与机械刺激和伤害性刺激的转导。在这里,我们检查了由非洲爪蟾卵母细胞中表达的亚单位ASIC2和ASIC3组成的通道的单通道特性,使用了由外而内的贴片。在150 mM Na + 外部和150 mM K + 外部,平均单通道电流-电压关系在-80和-40 mV之间的斜率电导为18 pS,在-80和-40 mV之间在移液器内。一价阳离子的选择性具有序列Na + + + 。诸如Ca 2 + 的二价阳离子不会渗透,而是在应用于细胞外时会阻塞通道。外部质子增加了通道开放至最大0.8的可能性,EC50为16±4μM,希尔系数为2.7±0.3,而平均单通道电流幅度与外部pH无关。对单通道动力学的分析表明,除了处于灭活状态外,还存在至少四种活动模式(Mod1至Mod4)。三种模式表现出独特的动力学,可以根据打开概率明确确定(PoMod1 = 0.5±0.05; PoMod2> 0.9±0.05; PoMod3 <0.1)。模式4的Po值在0.5-0.8范围内,可以构成一个独特的模式,或者表示其他三种活动模式之间的转换。增加[H + ] o会增加进入Po值较高的模式(模式1、2和4)的频率,并增加通道在活动性较高的模式中花费的时间。

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