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首页> 外文期刊>The Journal of Physiology >Oxytocin can regulate myometrial smooth muscle excitability by inhibiting the Na+-activated K+ channel, Slo2.1
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Oxytocin can regulate myometrial smooth muscle excitability by inhibiting the Na+-activated K+ channel, Slo2.1

机译:催产素可以通过抑制Na +活化的K +通道,SLO2.1来调节肌瘤平滑肌兴奋性

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摘要

During pregnancy, the uterus transitions from a quiescent state to a more excitable contractile state. This is considered to be at least partly a result of changes in the myometrial smooth muscle cell (MSMC) resting membrane potential. However, the ion channels controlling the myometrial resting membrane potential and the mechanism of transition to a more excitable state have not been fully clarified. In the present study, we show that the sodium-activated, high-conductance, potassium leak channel, SLO2.1, is expressed and active at the resting membrane potential in MSMCs. Additionally, we report that SLO2.1 is inhibited by oxytocin binding to the oxytocin receptor. Inhibition of SLO2.1 leads to membrane depolarization and activation of voltage-dependent calcium channels, resulting in calcium influx. The results of the present study reveal that oxytocin may modulate MSMC electrical activity by inhibiting SLO2.1 potassium channels.
机译:在怀孕期间,子宫从静态状态转变为更快的收缩状态。 这被认为是至少部分地成为肌瘤平滑肌细胞(MSMC)静态膜电位的变化的结果。 然而,控制肌瘤静止膜电位的离子通道和过渡到更激发状态的机理尚未得到完全阐明。 在本研究中,我们表明,在MSMCs中的静止膜电位下表达和活性钠激活的,高导率,钾漏通道SLO2.1。 另外,我们报告了通过催产素与催产素受体结合的SLO2.1抑制。 SLO2.1的抑制导致膜去极化和电压依赖性钙通道的激活,导致钙流入。 本研究的结果表明,催产素可以通过抑制SLO2.1钾通道调节MSMC电活性。

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