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Pituitary Control of BK Potassium Channel Function and Intrinsic Firing Properties of Adrenal Chromaffin Cells

机译:BK钾通道功能的垂体控制和肾上腺嗜铬细胞的内在放电特性。

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摘要

The discovery that the hypothalamic–pituitary–adrenocortical (HPA) endocrine stress axis controls an alternative splicing decision in chromaffin Slo-encoded BK (big potassium) channels raised the possibility that activation of the HPA could serve as a mechanism to tune the intrinsic electrical properties of epinephrine-secreting adrenal chromaffin cells. To test this, we compared BK functional properties and cell excitability in chromaffin cells from normal and hypophysectomized (pituitary-ablated) rats. Hypophysectomy was found to alter the voltage dependence and kinetics of BK gating, making channels less accessible for activation from rest. Perforated-patch recordings revealed changes in action potential waveform and repetitive firing properties. The maximum number of spikes that could be elicited with a 2 sec depolarizing current pulse was reduced by ∼50% by hypophysectomy. The results indicate that pituitary hormones can adapt the mechanics of adrenal catecholamine release by tailoring BK channel function.
机译:下丘脑-垂体-肾上腺皮质(HPA)内分泌应力轴控制着嗜铬细胞Slo编码的BK(大钾)通道中的另一种剪接决定的发现,增加了HPA激活可以用作调节内在电学性质的机制的可能性肾上腺素分泌的肾上腺嗜铬细胞的表达。为了测试这一点,我们比较了正常和垂体切除(垂体切除)大鼠的嗜铬细胞中的BK功能特性和细胞兴奋性。垂体后叶切除术改变了BK门控的电压依赖性和动力学,使通道难以从静止状态激活。穿孔补丁记录揭示了动作电位波形和重复发射特性的变化。垂体切除术可以使2秒去极化电流脉冲引起的最大尖峰数目减少约50%。结果表明,垂体激素可通过调节BK通道功能来适应肾上腺儿茶酚胺释放的机制。

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