首页> 美国卫生研究院文献>The Journal of Physiology >Characteristics of voltage-gated Ca2+ currents in ovine gonadotrophs.
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Characteristics of voltage-gated Ca2+ currents in ovine gonadotrophs.

机译:绵羊性腺营养中的电压门控Ca2 +电流的特征。

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摘要

1. Voltage-clamp recordings were obtained from gonadotrophs of the ovine pars tuberalis in dissociated cell culture, utilizing the whole-cell recording mode of the patch-clamp technique. 2. The amplitudes of Ca2+ and Ba2+ currents were dependent on the extracellular concentration of divalent cation. 3. Ba2+ tail currents were observed on termination of depolarizing voltage steps. The extrapolated amplitudes of 'instantaneous' tail currents increased with membrane depolarization and showed saturation beyond +15 mV. 4. True inactivation of currents occurred in the presence of both external Ca2+ and Ba2+, judged from decrease in tail current amplitudes with progressive increases in duration of the activating voltage pulse. The inactivation process was fitted by a single-exponential function at membrane potentials below -25 mV, while at more depolarized potentials the inactivation was better described by a double-exponential function. The inactivation time constants decreased with positive shifts in membrane potential favouring a voltage-dependent inactivation. 5. The half-value of steady-state inactivation was observed at -40 mV using a two-pulse protocol. 6. Power spectral analysis of Ba2+ current noise from the steady-state portion of inward current showed a double Lorentzian fit of the power spectrum. 7. Two types of voltage-activated Ca2+ currents were identified based on their kinetics, voltage dependence, dependence on activation frequency, differential sensitivity to intracellular ATP and cyclic AMP, and to extracellular application of nifedipine. The channels with faster kinetics had a lower activation threshold (-50 mV) and the amplitude of the current was sensitive to clamping frequency. 8. From ensemble noise analysis of mean maximal inward current, single-channel amplitude of about 1 pA was estimated in 50 mM-Ba2+.
机译:1.利用膜片钳技术的全细胞记录模式,在分离的细胞培养物中,从羊角tube的性腺营养获得了电压钳记录。 2. Ca2 +和Ba2 +电流的幅度取决于二价阳离子的细胞外浓度。 3.在去极化电压阶跃终止时观察到Ba2 +尾电流。 “瞬时”尾电流的外推幅度随膜去极化而增加,并显示超过+15 mV的饱和度。 4.电流的真正失活发生在外部Ca2 +和Ba2 +均存在的情况下,这可根据激活电压脉冲的持续时间逐渐增加而导致的尾电流幅值的降低来判断。在低于-25 mV的膜电势下,失活过程由单指数函数拟合,而在去极化电势更多时,通过双指数函数可以更好地描述失活。失活时间常数随着膜电位的正移而降低,有利于电压依赖性失活。 5.使用两脉冲方案在-40 mV观察到稳态失活的半值。 6.来自内向电流稳态部分的Ba2 +电流噪声的功率谱分析显示,功率谱具有双重洛伦兹拟合。 7.根据其动力学,电压依赖性,对活化频率的依赖性,对细胞内ATP和环AMP的敏感性以及对硝苯地平在细胞外的应用,确定了两种类型的电压激活的Ca2 +电流。具有更快动力学的通道具有较低的激活阈值(-50 mV),并且电流幅度对钳位频率敏感。 8.根据平均最大流入电流的集成噪声分析,在50 mM-Ba2 +中估计约1 pA的单通道振幅。

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