首页> 美国卫生研究院文献>The Journal of Physiology >Conductance of the sodium channel in myelinated nerve fibres with modified sodium inactivation.
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Conductance of the sodium channel in myelinated nerve fibres with modified sodium inactivation.

机译:修饰的钠灭活后髓鞘神经纤维中钠通道的传导。

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摘要

1. Na current fluctuations in nodes of Ranvier were measured under voltage clamp conditions as described in the preceding paper (Conti, Hille, Neumcke, Nonner & Stämpfli, 1976) and analysed in terms of power spectral density calculated for frequencies between 30 Hz and 5 kHz. 2. External (10(-5) g/ml.) Leiurus scorpion venom or Anemonia Toxin II (3 X 10(-5) g/ml.) or internal 20 mM iodate were applied in order to remove or slow down inactivation in part of the Na channels. The treatment increased the steady-state Na current during the noise measurement one-to eight fold over that in normal fibres. 3. Noise spectra were interpreted as the sum of 1/f noise and noise SNa(f) due to all-or-none, open-close transitions of single Na channels. The drug effects on the inactivation could be accounted for either by assuming two populations of channels, one with and one without inactivation, or by postulating a single population with modified inactivation characteristics. 4. Except for an increase in amplitude, the fluctuation spectra SNa(f) were similar to the ones in normal nodes. Again, the time constants taum obtained from the fit of the spectra agreed within a factor of 2 with the values of taum found in the macroscopic Na currents. 5. From the fluctuation spectra, single Na channel conductances gamma of 5-4 +/- 0-4 pS (iodate), 6-7 +/- 0-5 pS (Leiurus) and 7-0 +/- 0-6 pS (Anemonia) were calculated. The value of gamma was not significantly voltage dependent. 6. Our observations indicate that inactivation of Na channels can be modified with at most small effects on the microscopic properties of the activation process and on the conductance of the open channel. They suggest that the h mechanism normally produces all-or-none, open-close changes of conductance.
机译:1.如前一篇论文所述(Conti,Hille,Neumcke,Nonner&Stämpfli,1976年),在电压钳制条件下测量了Ranvier节点的Na电流波动,并针对30 Hz至5 Hz之间的频率计算了功率谱密度千赫。 2.施加外部(10(-5)g /ml。Leiurus蝎毒或Anemonia Toxin II(3 X 10(-5)g / ml。)或内部20 mM碘酸盐,以去除或减慢其灭活速度。钠通道的一部分。这种处理使噪声测量过程中的稳态Na电流比正常纤维增加了1到8倍。 3.噪声频谱被解释为1 / f噪声和噪声SNa(f)的总和,这是由于单个Na通道的全部或完全,开-关转换引起的。药物对失活的影响可以通过假设两个通道种群,一个具有一个失活和一个不具有失活,或通过假设一个具有失活特性已改变的单个种群来解释。 4.除了幅度增加外,波动谱SNa(f)与正常节点的波动谱相似。同样,从光谱拟合中获得的时间常数taum与宏观Na电流中发现的taum值相差2倍。 5.从波动光谱中,单个Na通道电导伽马为5-4 +/- 0-4 pS(碘酸盐),6-7 +/- 0-5 pS(Leiurus)和7-0 +/- 0-6计算了ps(Anemonia)。伽玛值与电压无关。 6.我们的观察结果表明,可以改变Na通道的失活,而对激活过程的微观性质和开放通道的电导率影响很小。他们认为,h机制通常会产生电导的全无或全开或全闭的变化。

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