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首页> 外文期刊>Acta physiologica Scandinavica >Inhibition of BK channels contributes to the second phase of the response to TRH in clonal rat anterior pituitary cells.
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Inhibition of BK channels contributes to the second phase of the response to TRH in clonal rat anterior pituitary cells.

机译:BK通道的抑制有助于克隆大鼠垂体前叶细胞对TRH反应的第二阶段。

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Abstract Aim: Thyrotropin-releasing hormone (TRH) induces biphasic changes in the electrical activity, the cytosolic free Ca(2+) concentration ([Ca(2+)](i)), and prolactin secretion from both GH cells and native lactotrophs. It is well established that inhibition of erg channels contributes to the second phase of the TRH response. We have investigated if BK channels are also involved. Results: The BK channels may be active at the resting membrane potential (open probability, P(o) = 0.01) in clonal rat anterior pituitary cells (GH(4)), which makes it possible that inhibition of these channels may contribute to the reduced K(+) conductance during the TRH response. The specific BK channel blocker iberiotoxin (IbTx, 100 nm) had no effect on the resting conductance at holding potentials negative to -40 mV, but significantly reduced the conductance at shallower membrane potentials. This corresponds to the voltage dependency of the sustained [Ca(2+)](i). Furthermore, IbTx increased the action potential frequency by 36% in spontaneously firing cells. During the second phase of the TRH response, the action potential frequency increased by 34%, concomitantly with 61% reduction of the P(o) of single BK channels. The protein kinase C (PKC)-activating phorbol ester TPA had no significant effect on BK channel P(o) within the normal range of the resting potential. Conclusion: The BK channels may contribute to the resting membrane conductance, and they are partially inhibited by TRH during the second phase. This modulation seems not to depend on PKC. We propose that inhibition of erg and BK channels acts in concert to enhance the cell excitability during the second phase of the response to TRH.
机译:摘要目的:促甲状腺激素释放激素(TRH)诱导电活动,胞质游离Ca(2+)浓度([Ca(2 +)](i))和GH细胞和天然乳酸菌的催乳素分泌发生双相变化。 。众所周知,抑制erg通道有助于TRH反应的第二阶段。我们调查了是否还涉及BK频道。结果:BK通道可能在克隆的大鼠垂体前叶细胞(GH(4))中处于静息膜电位下(开放概率,P(o)= 0.01),这可能抑制了这些通道可能有助于在TRH响应过程中降低了K(+)电导。特定的BK通道阻滞剂埃博毒素(IbTx,100 nm)在保持电势为-40 mV负值时对静息电导率没有影响,但在较浅的膜电势下显着降低了电导率。这对应于持续的[Ca(2 +)](i)的电压依赖性。此外,IbTx在自发激发细胞中使动作电位频率增加了36%。在TRH响应的第二阶段,动作电位频率增加了34%,同时单个BK通道的P(o)降低了61%。激活蛋白激酶C(PKC)的佛波酯TPA在正常静息电位范围内对BK通道P(o)没有明显影响。结论:BK通道可能有助于静息膜传导,在第二阶段它们被TRH部分抑制。这种调制似乎不依赖于PKC。我们建议抑制erg和BK通道协同行动,以增强对TRH反应的第二阶段期间的细胞兴奋性。

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