Ferrari M B, Zakon H H
Department of Zoology, University of Texas, Austin 78712.
J Comp Physiol A. 1993 Sep;173(3):281-92. doi: 10.1007/BF00212692.
In Sternopygus macrurus, electrocyte action potential duration determines the electric organ discharge pulse duration. Since the electric organ discharge is a sexually-dimorphic behavior under the control of steroid hormones, and because electrocyte action potential durations can range from 3-14 ms, the electrocytes provide a unique opportunity to study how sex steroids regulate membrane excitability. In this study, the voltage-sensitive ionic currents of electrocytes were identified under current- and voltage-clamp as a prelude to further studies on their regulation by sex steroid hormones. Bath application of TTX completely abolished the spike and eliminated an inward current under voltage clamp, indicating that the action potential is due primarily to a sodium current. Calcium-free saline had no effect on spike waveform or voltage-clamp currents, indicating that neither calcium nor calcium-dependent currents contribute to the action potential. Application of potassium channel blocking agents, such as tetraethylammonium and cesium ions, caused changes in the spike which, together with voltage-clamp results, indicate the presence of two potassium currents: an inward rectifier and a classical delayed rectifier. In addition, these cells have a large, presumably voltage-insensitive, chloride current. Differences in one or more of these currents could be responsible for the range of action potential durations found in these cells and for the steroid-mediated changes in spike duration.
在长尾南美电鳗中,电细胞动作电位的持续时间决定了发电鱼电器官放电脉冲的持续时间。由于电器官放电是一种受类固醇激素控制的两性异形行为,并且电细胞动作电位的持续时间可以在3 - 14毫秒之间变化,因此电细胞为研究性类固醇如何调节膜兴奋性提供了一个独特的机会。在本研究中,在电流钳和电压钳条件下鉴定了电细胞的电压敏感性离子电流,作为进一步研究它们如何受性类固醇激素调节的前奏。在浴槽中施加河豚毒素(TTX)完全消除了动作电位,并在电压钳条件下消除了内向电流,这表明动作电位主要归因于钠电流。无钙生理盐水对动作电位波形或电压钳电流没有影响,这表明钙及钙依赖性电流均不参与动作电位的形成。应用钾通道阻断剂,如四乙铵和铯离子,会引起动作电位的变化,结合电压钳实验结果表明存在两种钾电流:内向整流钾电流和典型的延迟整流钾电流。此外,这些细胞还具有一种大的、可能对电压不敏感的氯电流。这些电流中一种或多种的差异可能是造成这些细胞动作电位持续时间变化范围的原因,也是类固醇介导的动作电位持续时间变化的原因。