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在电压钳制条件下被囊动物卵的膜电流。

Membrane currents of the tunicate egg under the voltage-clamp condition.

作者信息

Okamoto H, Takahashi K, Yoshii M

出版信息

J Physiol. 1976 Jan;254(3):607-38. doi: 10.1113/jphysiol.1976.sp011249.

Abstract
  1. Ionic currents of the egg membrane of a certain tunicate. Halocynthia roretzi Drashe, were studied by the voltage-clamp technique. 2. The membrane depolarization beyond -55mV in standard artificial sea water induced mainly transient inward current and slight outward currents, when the holding potential was kept at -99 mV. 3. The transient inward current was composed of two components; the major one showed a faster time course, a more negative critical level of about -55 mV, and a reversal potential around +60 mV and the minor one showed a slower time course, a less negative critical level o -10 mV, and no definite reversal potential. 4. The major component became maximum at about -25 mV with the peak time of 6-9 msec at 15 degrees C, and the maximum currents ranged from 0-5 to 1-5 X 10(-5) A/cm2. 5. The major component of the inward current was abolished by the replacement of Na with choline or Tris or Cs ions, while it was almost unaltered by the replacement with Li. The minor component was independent of Na concentration in the external solution. 6. The major component showed the activation and inactivation identical with those of Na current of other excitable membranes. A conditioning depolarization over -90 mV inactivated the Na current and the half inactivation of the major inward current was obtained by a conditioning pulse to -56 mV, when the pulse duration was 400 msec and the temperature was at 15 degrees C. 7. The time course of the Na current was formulated with m and h parameters in the following equations: (see article). 8. The kinetic parameters taum and tauh of egg Na current were calculated and compared with those of the squid axon. The potential dependence of taum and tauh was almost identical with that of the axon, but the absolute values of both taum and tauh were ten- to twentyfold larger than those of the axon in any range of the membrane potential. 9. The temperature depdence of the kinetic parameters taum, tauh and of the chord conductance gNa was studied. The Q10's for taum and tauh were both 4-0, while the Q10 for gNa was 2-0 in the temperature range from 5 to 20 degrees C. 10. The outward and inward rectifying conductances of egg membrane were remarkably activated at the potential level above +100 mV and below -70 mV respectively in standard artificial sea water. Both increased currents were subsequently subject to inactivation. 11. It was suggested that Na, Ca, K inward rectifying and K outward rectifying conductances all exist separately in the egg cell membrane and the Na current was essentially identical with that through the Na channel in other excitable membranes.
摘要
  1. 采用电压钳技术研究了某种被囊动物(柄海鞘)卵膜的离子电流。

  2. 当钳制电位保持在 -99 mV 时,在标准人工海水中,膜去极化超过 -55 mV 主要诱发短暂内向电流和轻微外向电流。

  3. 短暂内向电流由两个成分组成;主要成分时间进程较快,临界电位约为 -55 mV,更负,反转电位约为 +60 mV,次要成分时间进程较慢,临界电位约为 -10 mV,较不那么负,且无明确反转电位。

  4. 主要成分在约 -25 mV 时达到最大值,在 15℃ 时峰值时间为 6 - 9 毫秒,最大电流范围为 0.5 至 1.5×10⁻⁵ A/cm²。

  5. 内向电流的主要成分在用胆碱、Tris 或 Cs 离子替代 Na 时被消除,而用 Li 替代时几乎不变。次要成分与外部溶液中 Na 浓度无关。

  6. 主要成分的激活和失活与其他可兴奋膜的 Na 电流相同。当脉冲持续时间为 400 毫秒且温度为 15℃ 时,超过 -90 mV 的预处理去极化使 Na 电流失活,对 -56 mV 的预处理脉冲可使主要内向电流达到半失活。

  7. Na 电流的时间进程用 m 和 h 参数按以下方程表示:(见文章)。

  8. 计算了卵 Na 电流的动力学参数 τm 和 τh,并与枪乌贼轴突的进行比较。τm 和 τh 的电位依赖性与轴突几乎相同,但在膜电位的任何范围内,τm 和 τh 的绝对值都比轴突大 10 至 20 倍。

  9. 研究了动力学参数 τm、τh 和弦电导 gNa 的温度依赖性。在 5 至 20℃ 的温度范围内,τm 和 τh 的 Q₁₀ 均为 4.0,而 gNa 的 Q₁₀ 为 2.0。

  10. 在标准人工海水中,卵膜的外向和内向整流电导分别在高于 +100 mV 和低于 -70 mV 的电位水平时显著激活。随后两种增加的电流都发生失活。

  11. 提示卵细胞膜中 Na、Ca、K 内向整流和 K 外向整流电导均分别存在,且 Na 电流与其他可兴奋膜中通过 Na 通道的电流基本相同。

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