首页> 美国卫生研究院文献>The Journal of Physiology >Multiple components of delayed rectifier K+ current in canine colonic smooth muscle.
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Multiple components of delayed rectifier K+ current in canine colonic smooth muscle.

机译:犬结肠平滑肌中延迟整流器K +电流的多个分量。

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摘要

1. We investigated the pharmacology and voltage-dependent activation and inactivation kinetics of the 'delayed rectifier' K+ current, IdK, in canine colonic myocytes and developed protocols which separate this current into three distinct components that differ in their kinetics and pharmacology. 2. Block of IdK by TEA or 4-aminopyridine (4-AP) alone was incomplete. Maximal concentrations of TEA or 4-AP blocked 76% (EC50 = 2.6 mM) and 51% (EC50 = 69 mM) of current, respectively. In the presence of 10 mM 4-AP, IdK could be blocked completely by TEA. 3. TEA and 4-AP had distinct effects on current activation: time constants for activation of IdK at +10 mV were 25.6 +/- 4.4 ms under control conditions, 40.3 +/- 7.6 ms in the presence of 10 mM 4-AP and 16.7 +/- 2.3 ms with 10 mM TEA in the bath solution. 4-AP block and removal of block were use dependent, but no frequency dependence or voltage dependence of steady-state block could be detected. These data are consistent with the presence of a rapidly activating 4-AP-sensitive current, IdK(f), and a more slowly activating TEA-sensitive current component, IdK(s). 4. A third component of the delayed rectifier current, IdK(n), was revealed when 10 mM TEA was included in the pipette solution. IdK(n) was rapidly activating, had a membrane potential at half-maximal inactivation (V1/2) for steady-state inactivation 13 mV negative of that for the mixed IdK, was completely insensitive to 4-AP (10 mM) and was blocked by external TEA with an EC50 of 7.7 mM. 5. These data demonstrate that the delayed rectifier current in canine colonic smooth muscle is composed of three currents, IdK(f), IdK(s) and IdK(n). All three currents are insensitive to charybdotoxin (100 nM).
机译:1.我们研究了犬结肠肌细胞中“延迟整流器” K +电流IdK的药理学和电压依赖性激活和失活动力学,并开发了将该电流分为动力学和药理学不同的三个不同成分的方案。 2.仅通过TEA或4-氨基吡啶(4-AP)对IdK的阻滞作用不完全。 TEA或4-AP的最大浓度分别阻止了76%(EC50 = 2.6 mM)和51%(EC50 = 69 mM)的电流。在10 mM 4-AP存在下,IdA可能被TEA完全阻断。 3. TEA和4-AP对电流激活有明显的影响:在+10 mV的条件下,激活IdK的时间常数在控制条件下为25.6 +/- 4.4 ms,在10 mM 4-AP的存在下为40.3 +/- 7.6 ms在浴液中加入10 mM TEA时为16.7 +/- 2.3 ms。 4-AP块和块的去除取决于使用情况,但无法检测到稳态块的频率依赖性或电压依赖性。这些数据与快速激活的4-AP敏感电流IdK(f)和激活速度较慢的TEA敏感电流分量IdK(s)一致。 4.当移液器溶液中包含10 mM TEA时,揭示了延迟整流器电流的第三分量IdK(n)。 IdK(n)快速活化,在稳态最大失活的一半最大失活(V1 / 2)处具有膜电位,是混合IdK的13 mV负值,对4-AP(10 mM)完全不敏感,并且被外部TEA阻断,EC50为7.7 mM。 5.这些数据表明,犬结肠平滑肌中的延迟整流电流由三个电流IdK(f),IdK(s)和IdK(n)组成。这三个电流均对炭疽毒素(100 nM)不敏感。

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