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首页> 外文期刊>The Journal of general physiology >Effects of deuterium oxide on the rate and dissociation constants for saxitoxin and tetrodotoxin action. Voltage-clamp studies on frog myelinated nerve.
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Effects of deuterium oxide on the rate and dissociation constants for saxitoxin and tetrodotoxin action. Voltage-clamp studies on frog myelinated nerve.

机译:氧化氘对沙毒素和河豚毒素作用的速率和解离常数的影响。蛙钳状神经的电压钳研究。

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The actions of tetrodotoxin (TTX) and saxitoxin (STX) in normal water and in deuterium oxide (D2O) have been studied in frog myelinated nerve. Substitution of D2O for H2O in normal Ringer's solution has no effect on the potency of TTX in blocking action potentials but increases the potency of STX by approximately 50%. Under voltage clamp, the steady-state inhibition of sodium currents by 1 nM STX is doubled in D2O as a result of a halving of the rate of dissociation of STX from the sodium channel; the rate of block by STX is not measurably changed by D2O. Neither steady-state inhibition nor the on- or off-rate constants of TTX are changed by D2O substitution. The isotopic effects on STX binding are observed less than 10 min after the toxin has been added to D2O, thus eliminating the possibility that slow-exchange (t 1/2 greater than 10 h) hydrogen-binding sites on STX are involved. The results are consistent with a hypothesis that attributes receptor-toxin stabilization to isotopic changes of hydrogen bonding; this interpretation suggests that hydrogen bonds contribute more to the binding of STX than to that of TTX at the sodium channel.
机译:河豚毒素(TTX)和毒毒素(STX)在正常水和氧化氘(D2O)中的作用已在青蛙有髓神经中进行了研究。在正常的林格氏液中用D2O代替H2O对TTX阻断动作电位的效能没有影响,但会使STX的效能提高约50%。在电压钳制下,由于STX从钠通道的解离速率减半,D2O中钠电流在1nM STX的稳态抑制作用增加了一倍。 DTX不能显着改变STX的阻塞率。 D2O取代不会改变稳态抑制或TTX的开或关速率常数。在将毒素添加到D2O之后不到10分钟,就观察到了同位素对STX结合的影响,因此消除了STX上缓慢交换(大于10小时的t 1/2)氢结合位点的可能性。该结果与假设受体毒素稳定归因于氢键的同位素变化的假设相符。这种解释表明氢键对STX的结合比对钠通道上的TTX的贡献更大。

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