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Deuterium oxide and temperature effects on the properties of endplate channels at the frog neuromuscular junction

机译:氧化氘和温度对青蛙神经肌肉接头终板通道性质的影响

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摘要

The effects of deuterium oxide (D2O) and temperature on the properties of endplate channels were studied in voltage-clamped muscle fibers from the frog Rana pipiens. Studies were performed at temperatures of 8, 12, 16, and 20 degrees C. The single channel conductance (gamma) and mean channel lifetime (tau) were calculated from fluctuation analysis of the acetylcholine-induced end-plate currents. The reversal potential was determined by interpolation of the acetylcholine-induced current- voltage relation. The mean reversal potential was slightly more negative in D2O Ringer's (-7.9 +/- 0.1 mV [+/- SEM]) compared with H2O Ringer's (-5.2 +/- 0.6 mV, P less than 0.01). The single channel conductance was decreased in D2O. This decrease was greater than could be accounted for by the increased viscosity of D2O solutions, and the amount of the decrease was greater at higher temperatures. For example, gamma was 38.4 +/- 1.3 pS (+/- SEM) in H2O Ringer's and 25.7 +/- 1.0 pS in D2O Ringer's for a holding potential of -70 mV at 12 degrees C. The mean channel lifetime was significantly shorter in D2O, and the effect was greater at lower temperatures. There was not a strong effect of solvent on the temperature dependence of gamma. On the other hand, the temperature dependence of the reciprocal mean channel lifetime, alpha (where alpha = 1/tau), was strongly dependent upon the solvent. The single channel conductances showed no demonstrable voltage dependence over the range of -90 to -50 mV in both solvents. The reciprocal mean channel lifetime showed a voltage dependence, which could be described by the relation alpha = B exp(AV). The slope A was not strongly affected by either temperature or the solvent. On the other hand, the intercept B was a strong function of temperature and was weakly dependent upon the solvent, with most values greater in D2O. The D2O effects on alpha were what would be expected if they were due to the properties of D2O as a solvent (solvent isotope effects), while the D2O effects on gamma must also include the exchange of D for H in the vicinity of the selectivity filter (primary and/or secondary kinetic isotope effects).
机译:研究了蛙蛙皮蛙的电压钳制肌肉纤维中氘化氢(D2O)和温度对终板通道性能的影响。研究是在8、12、16和20摄氏度的温度下进行的。单通道电导(γ)和平均通道寿命(tau)是根据乙酰胆碱引起的终板电流的波动分析计算得出的。通过内插乙酰胆碱诱导的电流-电压关系确定反转电位。与H2O Ringer's(-5.2 +/- 0.6 mV,P小于0.01)相比,D2O Ringer's(-7.9 +/- 0.1 mV [+/- SEM])的平均反转电位稍负。 D2O中单通道电导降低。这种降低大于D2O溶液粘度增加所能解释的,并且降低的量在较高温度下更大。例如,在12°C时,-70 mV的保持电势在H2O Ringer中为38.4 +/- 1.3 pS(+/- SEM),在D2O Ringer中为25.7 +/- 1.0 pS。平均通道寿命明显缩短在D2O中,在较低温度下效果更大。溶剂对伽马的温度依赖性没有强烈影响。另一方面,倒数平均通道寿命的温度依赖性α(其中α= 1 / tau)很大程度上取决于溶剂。在两种溶剂中,单通道电导在-90至-50 mV的范围内均未显示出明显的电压依赖性。反向平均通道寿命显示出电压依赖性,可以通过关系α= B exp(AV)来描述。斜率A不受温度或溶剂的强烈影响。另一方面,截距B是温度的强函数,并且对溶剂的依赖性较小,大多数值在D2O中较大。如果D2O对α的影响是由于D2O作为溶剂的特性(溶剂同位素效应)而引起的,而D2O对γ的影响还必须包括在选择性过滤器附近将D交换为H (初级和/或次级动力学同位素效应)。

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