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首页> 外文期刊>The journal of physiological sciences >Rat GnRH Neurons Exhibit Large Conductance Voltage- and Ca2+-Activated K+ (BK) Currents and Express BK Channel mRNAs
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Rat GnRH Neurons Exhibit Large Conductance Voltage- and Ca2+-Activated K+ (BK) Currents and Express BK Channel mRNAs

机译:大鼠GnRH神经元表现出大电导电压和Ca2 +激活的K +(BK)电流并表达BK通道mRNA

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References(36) Cited-By(5) Gonadotropin-releasing hormone (GnRH) neurons form the final common pathway for the central regulation of reproduction. As in other neurons, the discharge pattern of action potentials is important for these neurons to function properly. Therefore it is important to elucidate the expression patterns of various types of ion channels in these neurons because they determine cell excitability. To date, voltage-gated Ca2+ channels and SK channels have been reported to be expressed in rat GnRH neurons. In this study, we focused on K+ channels and analyzed their expression in primary cultured GnRH neurons, prepared from GnRH-EGFP transgenic rats, by means of perforated patch-clamp recordings. GnRH neurons exhibited delayed-rectifier K+ currents and large conductance voltage- and Ca2+-activated K+ (BK) currents. Moreover, multicell RT-PCR (reverse transcriptase–polymerase chain reaction) experiments revealed the expression of BK channel mRNAs (α, β1, β2, and β4). The results show the presence of delayed-rectifier K+ currents and BK currents besides previously reported slow afterhyperpolarization currents. These currents control the action potential repolarization and probably also the firing pattern, thereby regulating the cell excitability of GnRH neurons.
机译:参考文献(36)被引用的By(5)促性腺激素释放激素(GnRH)神经元形成了中央调控生殖的最终通用途径。与其他神经元一样,动作电位的放电模式对于这些神经元的正常运行很重要。因此,阐明这些神经元中各种类型离子通道的表达方式非常重要,因为它们决定了细胞的兴奋性。迄今为止,据报道电压门控的Ca2 +通道和SK通道在大鼠GnRH神经元中表达。在这项研究中,我们专注于K +通道,并通过穿孔膜片钳记录分析了它们在从GnRH-EGFP转基因大鼠制备的原代培养GnRH神经元中的表达。 GnRH神经元表现出延迟整流K +电流以及大电导电压和Ca2 +激活的K +(BK)电流。此外,多细胞RT-PCR(逆转录酶-聚合酶链反应)实验还揭示了BK通道mRNA(α,β1,β2和β4)的表达。结果表明除了先前报道的缓慢的超极化后电流以外,还存在延迟整流器K +电流和BK电流。这些电流控制动作电位的复极化,并可能还控制放电模式,从而调节GnRH神经元的细胞兴奋性。

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