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pH对河豚毒素对食用蛙有髓神经纤维平衡效应的影响。

The influence of pH on equilibrium effects of tetrodotoxin on myelinated nerve fibres of Rana esculenta.

作者信息

Ulbricht W, Wagner H H

出版信息

J Physiol. 1975 Oct;252(1):159-84. doi: 10.1113/jphysiol.1975.sp011139.

Abstract
  1. The experiments were done on single nodes of Ranvier of Rana esculenta. The effects of tetrodotoxin and H ions were determined either by the reduction of the maximum rate of rise, VA, of action potentials evoked with threshold stimuli or in the voltage clamp by the decrease of the peak Na permeability, PNa. 2. With the tetrodotoxin sample used throughout the investigation the equilibrium dissociation constant, KT, of the toxin-receptor reaction at neutral pH was determined to be 2-8 nM. Between 1-55 and 15-5 nM tetrodotoxin the normalized value, A, of VA, was found to be related to the normalized toxin concentration cT = [TTX]/2-8 nM by the empirical equation log [(1-A)/A] = 1-22 log cT-0-573. 3. On increasing the pH (up to 8-8) the effect of tetrodotoxin diminished as revealed by an increase in A. The apparent reduction of cT (as calculated from A) suggests that the toxin is active only in its cationic forms. 4. Weakly acid tetrodotoxin solutions (7-3 less than pH less than or equal to 5-5) reduced A to a lesser degree than did neutral toxin solutions in spite of the inherent depressing effect of acid pH on A (A = 0-5 at about pH 5-5). In more acid toxin solutions A decreased again and at pH 4-6 it was about equal to the value in toxin-free solution. 5. When, after equilibrium in an acid toxin solution, the perfusate was suddenly changed to neutral Ringer solution A jumped to a higher value A' as measured 1 sec after the switch. Since the blocking effect of hydrogen ions subsided within a fraction of a second while the time constant of the toxin washout is of the order of 1 min, A' reflects the number of Na channels blocked by tetrodotoxin at acid pH. 6. In acid toxin-free solution the peak PNa as obtained in voltage clamp experiments was reduced by a voltage-dependent factor (cH + 1)-1 with CH = [H+]/KH(E) and KH(E) = 2-04 muM exp (0-34 EF/RT). Adding tetrodotoxin resulted in another reduction by a constant factor p'T. 7. Experiments employing various combinations of toxin concentration (3-1-93 nM) and pH values (7-3-5-2) confirm the decreased toxin effect at low pH. Moreover, p'T was smaller (the additional toxin effect larger) when the membrane had been kept depolarized and thus cH reduced during equilibration. This suggests that tetrodotoxin cations and H ions compete for the same blocking site. A quantitative fit, however, requires additional assumptions.
摘要
  1. 实验是在食用蛙的郎飞氏结单节上进行的。通过降低阈刺激诱发动作电位的最大上升速率(V_A),或在电压钳中通过降低峰值钠通透性(P_{Na})来测定河豚毒素和氢离子的作用。2. 在整个研究中使用的河豚毒素样品,在中性pH下毒素 - 受体反应的平衡解离常数(K_T)被测定为2 - 8 nM。在1.55至15.5 nM河豚毒素之间,(V_A)的归一化值(A),通过经验方程(\log[(1 - A)/A] = 1.22\log c_T - 0.573)与归一化毒素浓度(c_T = [TTX]/2.8 nM)相关。3. 随着pH升高(直至8.8),河豚毒素的作用减弱,这通过(A)的增加得以体现。(c_T)的明显降低(由(A)计算得出)表明毒素仅以阳离子形式具有活性。4. 弱酸河豚毒素溶液(7.3 < pH ≤ 5.5)使(A)降低的程度小于中性毒素溶液,尽管酸性pH对(A)有内在的抑制作用(在约pH 5.5时(A = 0.5))。在酸性更强的毒素溶液中,(A)再次降低,在pH 4.6时它约等于无毒素溶液中的值。5. 当在酸性毒素溶液中达到平衡后,灌注液突然变为中性林格溶液时,在切换后1秒测量,(A)跃升至更高的值(A')。由于氢离子的阻断作用在几分之一秒内消退,而毒素洗脱的时间常数约为1分钟,(A')反映了在酸性pH下被河豚毒素阻断的钠通道数量。6. 在无毒素的酸性溶液中,电压钳实验中获得的峰值(P_{Na})通过电压依赖性因子((c_H + 1)^{-1})降低,其中(c_H = [H^+]/K_H(E))且(K_H(E) = 2.04\ \mu M\ exp(0.34 E_F/RT))。添加河豚毒素导致进一步降低一个恒定因子(p_T')。7. 采用毒素浓度(3.1 - 93 nM)和pH值(7.3 - 5.2)的各种组合的实验证实了在低pH下毒素作用的降低。此外,当膜在平衡期间保持去极化从而(c_H)降低时,(p_T')较小(额外的毒素作用较大)。这表明河豚毒素阳离子和氢离子竞争相同的阻断位点。然而,定量拟合需要额外的假设。

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