White J A, Baxter D A, Byrne J H
Department of Neurobiology and Anatomy, University of Texas Medical School, Houston 77225.
Biophys J. 1994 Mar;66(3 Pt 1):710-8. doi: 10.1016/s0006-3495(94)80845-8.
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.
在对照条件下以及存在血清素(5-羟色胺,5-HT)的情况下,对海兔胸膜感觉神经元中的钾电流进行了研究。我们运用药理学技术分离出一种电流,将其称为IK,V。尽管尚不清楚IK,V是否代表一种独特类型的膜通道,但我们使用霍奇金-赫胥黎类型模型描述了它的特性。5-HT对IK,V的影响很复杂。在从-50 mV到+20 mV的电压钳制脉冲作用下,5-HT使IK,V的稳态幅值(Iss)降低了50%。此外,5-HT显著减慢了激活动力学(在+20 mV时激活时间常数增加了29%)和失活动力学(在+20 mV时失活时间常数增加了518%)。在对照条件下以及存在5-HT时对IK,V的数学描述被用于估计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。在向+20 mV进行电压钳制脉冲的前20毫秒内,5-HT对IK,V的影响占5-HT诱导的外向电流减少的87%以上。这一结果表明,5-HT通过对IK,V的调节,对感觉神经元的动作电位宽度产生了许多影响。5-HT对IK,V的影响与一个模型一致,在该模型中,电流的最大电导率降低了50%,并且在所有膜电位下,激活和失活过程的开放态与关闭态之间的速率常数在大小上均减小。