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豚鼠肠肌间神经元中的钙激活钾电导

The calcium-activated potassium conductance in guinea-pig myenteric neurones.

作者信息

Morita K, North R A, Tokimasa T

出版信息

J Physiol. 1982 Aug;329:341-54. doi: 10.1113/jphysiol.1982.sp014306.

Abstract
  1. Intracellular recordings were made from guinea-pig myenteric neurones in vitro.2. From one to sixty action potentials were followed by an afterhyperpolarization, the amplitude and duration of which increased with the number of preceding action potentials.3. The afterhyperpolarization reversed its polarity at a membrane potential of -91 mV. This value changed by 58 mV when the potassium concentration of the perfusing solution was changed ten-fold.4. The afterhyperpolarization was abolished in calcium-free solutions. It was shortened in low calcium (1.2 mM) solutions and prolonged in solutions which contained high (5.0 mM) calcium concentrations, TEA (1 mM) or caffeine (1 muM).5. The conductance increase during the afterhyperpolarization (g(K, Ca)) was calculated from the amplitude of electrotonic potentials, taking advantage of the lack of membrane rectification in the range -60 to -90 mV. Peak g(K, Ca) increased as the number of action potentials was increased, but was relatively independent of membrane potential in this range.6. g(K, Ca) declined with a time course which was single exponential (time constant 1.5-5 s) following one to six action potentials, and double exponential (time constants about 3 and 12 s) following fifteen to sixty action potentials.7. It is concluded that the calcium which enters the neurone during the action potential elevates the membrane potassium conductance. The time course of this conductance increase probably reflects the free intracellular calcium concentration, and therefore describes the calcium sequestration or extrusion process.
摘要
  1. 在体外对豚鼠肠肌间神经细胞进行细胞内记录。

  2. 一至六十个动作电位之后会跟随一个超极化后电位,其幅度和持续时间会随着先前动作电位的数量增加而增加。

  3. 超极化后电位在膜电位为 -91 mV 时反转其极性。当灌注溶液的钾浓度变化十倍时,该值变化了 58 mV。

  4. 超极化后电位在无钙溶液中消失。在低钙(1.2 mM)溶液中缩短,而在含有高钙(5.0 mM)浓度、TEA(1 mM)或咖啡因(1 μM)的溶液中延长。

  5. 利用 -60 至 -90 mV 范围内缺乏膜整流的特性,根据电紧张电位的幅度计算超极化后电位期间的电导增加(g(K, Ca))。随着动作电位数量增加,g(K, Ca) 的峰值增加,但在此范围内相对独立于膜电位。

  6. 跟随一至六个动作电位后,g(K, Ca) 以单指数时间进程下降(时间常数 1.5 - 5 s),跟随十五至六十个动作电位后,以双指数时间进程下降(时间常数约为 3 和 12 s)。

  7. 得出的结论是,动作电位期间进入神经元的钙会提高膜钾电导。这种电导增加的时间进程可能反映了细胞内游离钙浓度,因此描述了钙的螯合或挤出过程。

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