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海兔神经元中膜去极化所产生的钠电导和钙电导变化的特征

Characteristics of sodium and calcium conductance changes produced by membrane depolarization in an Aplysia neurone.

作者信息

Adams D J, Gage P W

出版信息

J Physiol. 1979 Apr;289:143-61. doi: 10.1113/jphysiol.1979.sp012729.

Abstract
  1. The time course and voltage dependence of Na and Ca conductance changes produced by depolarization of the soma of the neurone R15 in the abdominal ganglion of Aplysia juliana were examined at temperatures of 10--14 degrees C. 2. During a maintained depolarization, Na currents turned on then decayed (inactivated). Inactivation was exponential with time constant tauh. Activation (after correction for inactivation) was reasonably well described by the expression G'Na(t) = G'Na (infinity) (1 - exp [-t/taum])3 over a wide range of potentials. 3. taum and tauh were both voltage dependent. In the range -20 to +40 mV, taum varied from 5 to 0.5 msec and tauh from 25 to 8 msec (13.5 degrees C). Steady-state Na conductance (corrected for inactivation) was voltage dependent also, increasing sigmoidally with depolarization to a maximum of 25--30 muS at +10 to +20 mV. Half-maximal Na conductance occurred at a membrane potential of -8 mV and from -15 to -5 mV, a 5 mV change in membrane potential produced an e-fold change in steady-state Na conductance. 4. Steady-state inactivation of Na conductance (hNa(infinity)) was voltage dependent with half-inactivation occurring at a membrane potential of -32 mV. Recovery from Na inactivation followed an exponential time course with a voltage-dependent time constant. 5. During a maintained depolarization Ca currents activated then decayed (inactivated) more slowly than Na currents. The decay was exponential with time constant tauH. The decay of Ca current was not an artifact porduced by an outward current. The amplitude of calcium tail currents, produced by voltage steps back to epsilonK at different times during the decay of ICa, decayed also with a time constant close to tauH. 6. Ca conductance (after correction for inactivation) could be described approximately by the expression G'Ca(t) = G'Ca(infinity) (1 - exp [-t/tauM])p but it was necessary to vary p from 1 to 2 at different potentials. No value of p gave as good a fit to this model as that obtained for Na currents. 7. taum and tauH were voltage dependent. In the range of potentials from 0 to +60 mV, tauM varied from 9 to 5 msec and tauH from 300 to 50 msec (13.5 degrees C). Steady-state Ca conductance (corrected for inactivation) was voltage dependent also, increasing sigmoidally with depolarization to a maximum of 10--15 muS at +30 to +40 mV. Half-maximal Ca conductance occurred at a membrane potential of +12 mV, and from +10 to +20 mV a 6 mV change in membrane potential produced an e-fold change in Ca conductance. 8. Steady-state inactivation of Ca conductance (hCa(infinity)) varied with holding potential (VH). Half-inactivation occurred with depolarization to -20 mV. At potentials more negative than -40 mV, hCa(infinity) was less than at -40 mV, i.e. hyperpolarization produced Ca 'inactivation'. 9...
摘要
  1. 在10 - 14摄氏度的温度下,研究了朱丽安娜海兔腹神经节中神经元R15胞体去极化所产生的钠和钙电导变化的时间进程及电压依赖性。2. 在持续去极化过程中,钠电流开启后衰减(失活)。失活呈指数形式,时间常数为τh。在很宽的电位范围内,激活(校正失活后)可用表达式G'Na(t) = G'Na (∞) (1 - exp [-t/τm])³较好地描述。3. τm和τh均与电压有关。在-20至+40 mV范围内,τm在5至0.5毫秒之间变化,τh在25至8毫秒之间变化(13.5摄氏度)。稳态钠电导(校正失活后)也与电压有关,随着去极化呈S形增加,在+10至+20 mV时达到最大值25 - 30 μS。半最大钠电导出现在膜电位为-8 mV处,在-15至-5 mV范围内,膜电位变化5 mV会使稳态钠电导产生e倍变化。4. 钠电导的稳态失活(hNa(∞))与电压有关,半失活发生在膜电位为-32 mV处。从钠失活中恢复遵循指数时间进程,时间常数与电压有关。5. 在持续去极化过程中,钙电流激活后衰减(失活)的速度比钠电流慢。衰减呈指数形式,时间常数为τH。钙电流的衰减不是由外向电流产生的假象。在ICa衰减过程中不同时间电压跃回到εK所产生的钙尾电流幅度,也以接近τH的时间常数衰减。6. 钙电导(校正失活后)可用表达式G'Ca(t) = G'Ca(∞) (1 - exp [-t/τM])^p大致描述,但在不同电位下p需在1至2之间变化。没有一个p值能像对钠电流那样很好地拟合该模型。7. τm和τH与电压有关。在0至+60 mV的电位范围内,τM在9至5毫秒之间变化,τH在300至50毫秒之间变化(13.5摄氏度)。稳态钙电导(校正失活后)也与电压有关,随着去极化呈S形增加,在+30至+40 mV时达到最大值10 - 15 μS。半最大钙电导出现在膜电位为+12 mV处,在+10至+20 mV范围内,膜电位变化6 mV会使钙电导产生e倍变化。8. 钙电导的稳态失活(hCa(∞))随钳制电位(VH)而变化。去极化至-20 mV时发生半失活。在比-40 mV更负的电位下,hCa(∞)比在-40 mV时小,即超极化产生钙“失活”。9...
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b288/1281362/8448d4c36cf0/jphysiol00750-0148-a.jpg

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