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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Paradoxical role of large-conductance calcium-activated K+ (BK) channels in controlling action potential-driven Ca2+ entry in anterior pituitary cells.
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Paradoxical role of large-conductance calcium-activated K+ (BK) channels in controlling action potential-driven Ca2+ entry in anterior pituitary cells.

机译:大电导钙激活的K +(BK)通道在控制动作电位驱动的垂体前叶Ca2 +进入中的反常作用。

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摘要

Activation of high-conductance Ca(2+)-activated K(+) (BK) channels normally limits action potential duration and the associated voltage-gated Ca(2+) entry by facilitating membrane repolarization. Here we report that BK channel activation in rat pituitary somatotrophs prolongs membrane depolarization, leading to the generation of plateau-bursting activity and facilitated Ca(2+) entry. Such a paradoxical role of BK channels is determined by their rapid activation by domain Ca(2+), which truncates the action potential amplitude and thereby limits the participation of delayed rectifying K(+) channels during membrane repolarization. Conversely, pituitary gonadotrophs express relatively few BK channels and fire single spikes with a low capacity to promote Ca(2+) entry, whereas an elevation in BK current expression in a gonadotroph model system leads to the generation of plateau-bursting activity and high-amplitude Ca(2+) transients.
机译:高电导Ca(2+)激活K(+)(BK)通道的激活通常会限制动作电位的持续时间,并通过促进膜复极化来限制相关的电压门控Ca(2+)进入。在这里我们报告说,大鼠垂体生长激素中的BK通道激活延长了膜去极化,导致平台爆发活性的产生并促进了Ca(2+)的进入。 BK通道的这种自相矛盾的作用是由它们迅速被域Ca(2+)激活所决定的,这会截断动作电位振幅,从而限制了膜复极化过程中延迟整流K(+)通道的参与。相反,垂体促性腺激素表达相对较少的BK通道,并发射单个刺突,促进Ca(2+)进入的能力较低,而促性腺激素模型系统中BK当前表达的升高导致平台爆发活性的产生和高-振幅Ca(2+)瞬变。

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