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Analysis of the modulation by serotonin of a voltage-dependent potassium current in sensory neurons of Aplysia.

机译:5-羟色胺对海豚感觉神经元中电压依赖性钾电流的调节作用的分析。

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摘要

Potassium currents in pleural sensory neurons of Aplysia were studied under control conditions and in the presence of serotonin (5-HT). Using pharmacological techniques we isolated a current that we refer to as IK,V. Although it is not known whether IK,V represents a distinct type of membrane channel, we described its properties using a Hodgkin-Huxley type model. The effects of 5-HT on IK,V were complex. 5-HT decreased by 50% the steady-state magnitude (Iss) of IK,V in response to a voltage-clamp pulse from -50 mV to +20 mV. In addition, 5-HT significantly slowed both activation kinetics (the time constant of activation was increased by 29% at +20 mV) and inactivation kinetics (the time constant of inactivation was increased by 518% at +20 mV). Mathematical descriptions of IK,V in control conditions and in the presence of 5-HT were used to estimate the relative contribution of serotonergic modulation of IK,V to the total 5-HT-induced modulation of membrane currents. Effects of 5-HT on IK,V account for more than 87% of the 5-HT-induced reduction in outward current during the first 20 ms of a voltage-clamp pulse to +20 mV. This result implies that 5-HT exerts many of its effects on spike width in sensory neurons via modulation of IK,V. Effects of 5-HT on IK,V are consistent with a model in which the maximal conductance underlying the current is decreased by 50%, and the rate constants between open and closed states of both the activation and inactivation processes are diminished in magnitude across all membrane potentials.
机译:在对照条件下和存在5-羟色胺(5-HT)的条件下,研究了海ly胸膜感觉神经元中钾电流。使用药理学技术,我们分离出了一种称为IK,V的电流。尽管尚不清楚IK,V是否代表一种独特的膜通道类型,但我们使用Hodgkin-Huxley型模型描述了其特性。 5-HT对IK,V的作用复杂。响应于-50 mV至+20 mV的电压钳制脉冲,5-HT的IK,V稳态幅度(Iss)降低​​了50%。此外,5-HT显着减慢了激活动力学(在+20 mV下激活的时间常数增加了29%)和失活动力学(在+20 mV下失活的时间常数增加了518%)。在控制条件下和5-HT存在下IK,V的数学描述被用来估计IK,V的血清素能调节对5-HT诱导的膜电流总调节的相对贡献。 5-HT对IK,V的影响占在电压钳制脉冲的前20 ms到+20 mV的过程中,5-HT引起的向外电流减少的87%以上。该结果暗示5-HT通过IK,V的调节对感觉神经元的峰宽施加许多影响。 5-HT对IK,V的影响与一个模型相一致,在该模型中,电流的最大电导降低了50%,并且激活和灭活过程的打开状态和关闭状态之间的速率常数在所有范围内都减小了膜电位。

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