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首页> 外文期刊>The Journal of Physiology >The suppression of Ca(2+)- and voltage-dependent outward K+ current during mAChR activation in rat adrenal chromaffin cells.
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The suppression of Ca(2+)- and voltage-dependent outward K+ current during mAChR activation in rat adrenal chromaffin cells.

机译:在大鼠肾上腺嗜铬细胞mAChR激活过程中抑制Ca(2+)和电压依赖性向外K +电流。

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1. The mechanism by which muscarine, ionomycin or caffeine results in suppression of Ca(2+)- and voltage-dependent outward current in rat adrenal chromaffin cells was evaluated using both whole-cell voltage clamp and single channel recording. 2. The whole-cell current activated following the elevation of the cytosolic calcium concentration ([Ca2+]i) by muscarine inactivates with a time course comparable to that of single Ca(2+)- and voltage-dependent potassium (BK) channels. 3. The whole-cell inactivating current is pharmacologically similar to BK current. 4. The voltage dependence of inactivation and rate of recovery from inactivation are qualitatively similar for both whole-cell current and ensemble averages of single BK channels. Furthermore, changes in the rate of whole-cell current inactivation track expected changes in submembrane [Ca2+]. 5. The suppression of outward current can be accounted for solely by inactivation of BK channels and does not depend on the means by which [Ca2+]i is elevated. 6. Muscarinic acetylcholine receptor (mAChR) activation, changes in holding potential (-50 to -20 mV), and step depolarizations of different amplitude and duration were tested for their ability to elevate [Ca2+]i and thereby regulate the availability of BK current for activation. 7. Following muscarine-induced elevation of [Ca2+]i at holding potentials positive to -40 mV, the availability of BK current for activation was typically reduced by more than 50%. 8. Holding potentials in the range of -50 to -20 mV produced only slight alterations in the availability of BK current for activation. 9. Step depolarizations that cause maximal rates of Ca2+ influx (0 to +10 mV) must exceed 200 ms to reduce the availability of BK current by approximately 50%. 10. The results show that the muscarine-induced elevation of [Ca2+]i produces a profound reduction in the availability of BK channels for activation at membrane potentials likely to be physiologically meaningful. Although depolarization- induced Ca2+ influx can inactivate BK current, we propose that short duration depolarizations that occur during normal electrical activity will not significantly alter BK channel availability.
机译:1.使用全细胞电压钳和单通道记录评估了毒蕈碱,离子霉素或咖啡因抑制大鼠肾上腺嗜铬细胞中Ca(2+)和电压依赖性向外电流的机制。 2.毒蕈碱使胞质钙浓度([Ca2 +] i)升高后激活的全细胞电流失活的时间过程与单个Ca(2+)和电压依赖性钾(BK)通道的时间过程相当。 3.全细胞失活电流在药理上类似于BK电流。 4.对于全细胞电流和单个BK通道的总体平均值,失活的电压依赖性和失活的恢复速率在质量上相似。此外,全细胞电流失活速率的变化跟踪了亚膜[Ca2 +]的预期变化。 5.向外电流的抑制只能通过使BK通道失活来解决,而不取决于提高[Ca2 +] i的方式。 6.测试了毒蕈碱型乙酰胆碱受体(mAChR)的激活,保持电位的变化(-50至-20 mV)以及不同幅度和持续时间的阶跃去极化增强[Ca2 +] i的能力,从而调节了BK电流的可用性用于激活。 7.在毒蕈碱诱导的[Ca2 +] i升高至-40 mV的正电位时,激活BK电流的可用率通常降低了50%以上。 8.保持在-50至-20 mV范围内的电位只会使激活的BK电流的可用性略有变化。 9.导致Ca2 +流入的最大速率(0至+10 mV)的阶跃去极化必须超过200 ms,以将BK电流的可用性降低约50%。 10.结果表明,毒蕈碱诱导的[Ca2 +] i升高会大大降低BK通道在膜电位上激活的可能性,而这在生理上可能是有意义的。尽管去极化诱导的Ca2 +流入可以使BK电流失活,但我们提出在正常电活动期间发生的短时去极化不会显着改变BK通道的可用性。

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