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Measurement of the conductance of the sodium channel from current fluctuations at the node of Ranvier.

机译:根据Ranvier节点处的电流波动来测量钠通道的电导。

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摘要

Single myelinated nerve fibres of Rana esculenta were investigated under voltage clamp conditions at 13 degrees C. Fluctuations of steady-state membrane current were measured during the last 152 msec of 190-225 msec pulses depolarizing the membrane by 8-48 mV. Noise power spectral densities were calculated in the frequency range of 6-6-6757 Hz. 2. External application of 150 nM tetrodotoxin (TTX) and/or 10 mM tetraethylammonium (TEA) ion reduced the current fluctuations. The difference of current noise spectra measured in the presence and absence of TTX (TEA) was not changed by the presence of TEA (TTX) during both measurements, and was taken as the spectrum of the Na (K) current fluctuations. 3. Residual current noise during application of both TTX and TEA was, except for some excess noise at the low and high frequency ends of the spectrum, similar to the noise measured from a passive nerve model and could be understood in terms of Nyquist noise of the known resistances and the amplifier noise. 4. Na current fluctuation spectra were interpreted as the sum N/f+SNa(f) where SNa(F) represents the spectrum expected for a set of equal, independent Na channels with only two conductance states (open or closed) which follow Hodgkin-Huxley kinetics. With values of hinfinity, tauh and minfinity measured from macroscopic Na currents, the measured spectra were fitted well by optimizing N, SNa(0) and taum. Values of taum obtained by this method were in fair agreement with values found from macroscopic currents. 5. The 1/f component of Na current noise was roughly proportional to the square of the steady-state Na current, I2. The mean value of N/I2 was (1-1 +/- 0-3) X 10(-4). 6. The current carried by a single Na channel was calculated from fitted spectra and steady-state Na currents measured simultaneously with the current fluctuations. The single channel conductance gamma normalized to zero absolute membrane potential was calculated. The average gamma from twelve measurements at depolarizations of 8-40 mV was 7-9 +/- 0-9 pS (S.E. of mean). The apparent value of gamma was smallest with small depolarizations. Variations of the assumed kinetic properties of the model did not drastically affect the single channel conductance. 7. External application of 0-1 mM-Ni ion lengthened taum in the macroscopic currents and in the fluctuation spectra and enhanced both the steady-state Na current and the current fluctuations. In Ni-treated nodes gamma was smaller than in normal nodes.
机译:在13摄氏度的电压钳制条件下研究了蛙的单条有髓神经纤维。在190-225毫秒脉冲的最后152毫秒期间,以8-48毫伏使膜去极化,测量了稳态膜电流的波动。在6-6-6757 Hz的频率范围内计算出噪声功率谱密度。 2.外部应用150 nM河豚毒素(TTX)和/或10 mM四乙铵(TEA)离子可减少电流波动。在两次测量期间,在存在和不存在TTX(TEA)的情况下测得的电流噪声频谱的差异都不会因存在TEA(TTX)而改变,并被视为Na(K)电流波动的频谱。 3.除了在频谱的低频和高频端有一些多余的噪声外,在TTX和TEA施加过程中的残留电流噪声都是,类似于从被动神经模型测得的噪声,可以理解为Nyquist噪声。已知的电阻和放大器噪声。 4. Na电流波动谱被解释为N / f + SNa(f)的总和,其中SNa(F)代表一组遵循Hodgkin的仅两个电导状态(打开或关闭)的相等,独立的Na通道的预期光谱-Huxley动力学。通过从宏观Na电流测得的hinfinity,tauh和minfinity值,通过优化N,SNa(0)和taum可以很好地拟合测得的光谱。通过该方法获得的taum的值与从宏观电流中发现的值完全一致。 5. Na电流噪声的1 / f分量大致与稳态Na电流I2的平方成正比。 N / I 2的平均值为(1-1 +/- 0-3)X 10(-4)。 6.根据拟合的光谱和在电流波动的同时测量的稳态Na电流,计算单个Na通道承载的电流。计算归一化为零绝对膜电位的单通道电导γ。在去极化8-40 mV时进行十二次测量得到的平均γ为7-9 +/- 0-9 pS(平均值的标准误差)。 γ的表观值最小,去极化小。模型的假定动力学特性的变化不会显着影响单通道电导。 7.在宏观电流和波动谱中外加0-1 mM-Ni离子可延长taum的浓度,并增加了稳态Na电流和电流波动。在经镍处理的淋巴结中,γ比正常淋巴结小。

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