Khodorov B I, Neumcke B, Schwarz W, Stämpfli R
Biochim Biophys Acta. 1981 Oct 20;648(1):93-9. doi: 10.1016/0005-2736(81)90128-0.
(1) Single myelinated nerve fibers of Rana esculenta were treated with the steroidal alkaloid batrachotoxin, and Na+ currents and Na+-current fluctuations were measured near the resting potential under voltage-clamp conditions. Between test pulses the fibres were held at hyperpolarizing membrane potentials. (2) The spectral density of Na+-current fluctuations was fitted by the sum of a 1/f component and a Lorentzian function. The time constant tau c = 1/(2 pi fc) obtained from the corner frequency fc of the Lorentzian function approximately agreed with the activation time constant tau m of the macroscopic currents. (3) The conductance gamma of a single Na+ channel modified by batrachotoxin was calculated from the integral of the Lorentzian function and the steady-state Na+ current. At the resting potential V = 0 we obtained gamma - 1.6 pS, higher gamma-values of 3.2 and 3.45 pS were found at V = --8 and --16 mV, respectively. (4) The conductance of a modified Na+ channel is significantly lower than the values 6.4 to 8.85 pS reported in the literature for normal Na+ channels. Hence, our experiments are in agreement with the view that batrachotoxin acts in an 'all-or-none' manner on Na+ channels and creates a distinct population of modified channels.
(1)用甾体生物碱箭毒蛙毒素处理食用蛙的单根有髓神经纤维,并在电压钳制条件下测量静息电位附近的钠电流和钠电流波动。在测试脉冲之间,将纤维保持在超极化膜电位。(2)钠电流波动的功率谱密度由1/f分量和洛伦兹函数之和拟合。从洛伦兹函数的转折频率fc获得的时间常数τc = 1/(2πfc)大致与宏观电流的激活时间常数τm一致。(3)由洛伦兹函数的积分和稳态钠电流计算经箭毒蛙毒素修饰的单个钠通道的电导γ。在静息电位V = 0时,我们得到γ = 1.6 pS,在V = -8和-16 mV时分别发现更高的γ值3.2和3.45 pS。(4)经修饰的钠通道的电导明显低于文献报道的正常钠通道的6.4至8.85 pS的值。因此,我们的实验与箭毒蛙毒素以“全或无”方式作用于钠通道并产生不同的修饰通道群体的观点一致。