首页> 美国卫生研究院文献>The Journal of Physiology >Effect of lowered extracellular pH on Ca2(+)-dependent K+ currents in type I cells from the neonatal rat carotid body.
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Effect of lowered extracellular pH on Ca2(+)-dependent K+ currents in type I cells from the neonatal rat carotid body.

机译:降低的细胞外pH值对新生大鼠颈动脉I型细胞中Ca2(+)依赖性K +电流的影响。

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摘要

1. The whole-cell configuration of the patch-clamp technique was used to record K+ currents from type I cells enzymatically dispersed from the neonatal rat carotid body. The current-voltage (I-V) relationship for the K+ currents showed a prominent, outward shoulder at test potentials of between +10 and +30 mV. 2. The shoulder of the I-V curve could be enhanced by raising extracellular Ca2+ concentration or by bath application of 5 microM-Bay K 8644. It could also be suppressed by bath application of 100 microM-Cd2+ or 5 microM-methoxyverapamil (D600), indicating that a large component of the K+ current in these cells was activated by an influx of Ca2+ through its own channels during cell depolarization. 3. Potassium currents were also reversibly suppressed by 8 nM-charybdotoxin but unaffected by 100 nM-apamin, suggesting that the Ca2(+)-dependent K+ current was carried through large or intermediate conductance Ca2(+)-activated K+ channels. 4. Lowering the pH of the bathing medium from 7.40 to 7.00 reversibly reduced the K+ current amplitudes, and suppressed the shoulder normally seen in the I-V relationship. This effect was enhanced in the presence of 5 microM-Bay K 8644 and abolished in the presence of 5 microM-D600. 5. It is concluded that the Ca2(+)-dependent K+ channels of type I carotid body cells are selectively suppressed by extracellular acidity. Possible mechanisms underlying this effect, and its role in excitation of the carotid body are discussed.
机译:1.膜片钳技术的全细胞配置用于记录酶促分散自新生大鼠颈动脉体的I型细胞的K +电流。在+10至+30 mV的测试电势下,K +电流的电流-电压(I-V)关系显示出一个突出的向外凸肩。 2.可以通过提高细胞外Ca2 +浓度或通过浴涂5 microM-Bay K 8644来增强IV曲线的肩膀。也可以通过浴涂100 microM-Cd2 +或5 microM-甲氧基维拉帕米(D600)来抑制IV曲线的肩膀。这表明这些细胞中K +电流的很大一部分在细胞去极化过程中被Ca2 +通过其自身的通道流入而被激活。 3.钾电流还被8 nM-软骨毒素可逆地抑制,但不受100 nM-apapamin的影响,这表明依赖Ca2(+)的K +电流通过大或中等电导的Ca2(+)激活的K +通道传递。 4.将沐浴介质的pH从7.40降低到7.00可逆地降低了K +电流幅度,并抑制了I-V关系中通常看到的肩部。在存在5 microM-Bay K 8644的情况下增强了这种效果,而在存在5 microM-D600的情况下则取消了该效果。 5.结论是细胞外酸性可选择性抑制I型颈动脉体细胞的Ca2(+)依赖性K +通道。讨论了这种作用的潜在机制及其在激发颈动脉中的作用。

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