首页> 美国卫生研究院文献>The Journal of Physiology >Tetraethylammonium blockade of apamin-sensitive and insensitive Ca2(+)-activated K+ channels in a pituitary cell line.
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Tetraethylammonium blockade of apamin-sensitive and insensitive Ca2(+)-activated K+ channels in a pituitary cell line.

机译:垂体细胞系中对氨基苯甲酸酯敏感和不敏感的Ca2(+)激活的K +通道的四乙铵封锁。

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摘要

1. The pharmacological sensitivities and physiological contributions of two types of Ca2(+)-activated K+ channels (BK and SK) in GH3 cells were examined by the outside-out, whole-cell and cell-attached modes of the patch-clamp technique. 2. BK channels (250-300 pS in symmetrical 150 mM-K+) in outside-out patches were blocked by external tetraethylammonium (TEA) and by 50 nM-charybdotoxin (CTX), but were not blocked by apamin. 3. SK channels (9-14 pS in symmetrical 150 mM-K+) in outside-out patches were blocked by external TEA and by apamin, but were not blocked by 50 nM-CTX. 4. The dissociation constant (Kd) for TEA block of SK channels (3.1 +/- 0.37 mM) was 12-fold greater than the Kd for the BK channels (260 +/- 21 microM). The TEA blockade of both channels was not strongly voltage dependent: for both channels the TEA binding site sensed less than 20% of the membrane electric field. 5. Application of blockers of the BK channels (1 mM-TEA and 50 nM-CTX) to whole cells under current clamp prolonged action potential duration; whereas application of apamin, a selective blocker of the SK channel, inhibited a slowly decaying after-hyperpolarization and had little effect on action potential duration. Apamin also increased the firing rate in 30% of the spontaneously pacing cells. 6. It is suggested that BK channels contribute to action potential repolarization: whereas SK channels contribute to the regulation of action potential firing rate.
机译:1.通过膜片钳技术的外向,全细胞和细胞贴壁模式检查了GH3细胞中两种类型的Ca2(+)激活的K +通道(BK和SK)的药理敏感性和生理学贡献。 2.从外而外的贴片中的BK通道(对称150 mM-K +中的250-300 pS)被外部四乙铵(TEA)和50 nM-软骨毒素(CTX)阻滞,但未被apamin阻滞。 3.从外到外的贴片中的SK通道(对称150 mM-K +中的9-14 pS)被外部TEA和阿帕明阻滞,但未被50 nM-CTX阻滞。 4. SK通道的TEA嵌段的解离常数(Kd)(3.1 +/- 0.37 mM)比BK通道的解离常数(260 +/- 21 microM)大12倍。两个通道的TEA阻滞作用都不是很强的电压依赖性:对于两个通道,TEA结合位点都感觉不到膜电场的20%。 5.在电流钳作用下,BK通道阻滞剂(1 mM-TEA和50 nM-CTX)在整个细胞上的应用延长了动作电位的持续时间;而应用SK通道的选择性阻滞剂apamin则抑制了超极化后缓慢衰减,并且对动作电位持续时间的影响很小。 Apamin还提高了30%自发起搏细胞的放电率。 6.建议BK通道有助于动作电位复极化:而SK通道有助于调节动作电位发射率。

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