Breakwell N A, Behnisch T, Publicover S J, Reymann K G
Department of Physiology, Trinity College Dublin, Ireland.
Exp Brain Res. 1995;106(3):505-8. doi: 10.1007/BF00231075.
Calcium currents in CA1 neurons from rat hippocampus were studied with the whole-cell, patch-clamp technique. Under control conditions high-voltage-activated (HVA) calcium currents activated from membrane potentials of -80 mV and -40 mV underwent "run-down". The rate of run-down of the current activated from -40 mV was significantly attenuated by inclusion of the G-protein activator NaF (1 mM) in the pipette and also irreversibly attenuated by brief batch application of NaF (10 mM). This effect was significantly reduced by inclusion of high (10 mM) ethyleneglycoltetraacetate (EGTA) concentrations in the pipette, suggesting an involvement of calcium-dependent processes. It is suggested that activation of guanine nucleotide-binding proteins by NaF leads to a long-lasting attenuation of HVA calcium current run-down in hippocampal CA1 cells.
采用全细胞膜片钳技术研究了大鼠海马CA1神经元中的钙电流。在对照条件下,从 -80 mV和 -40 mV膜电位激活的高电压激活(HVA)钙电流出现了“衰减”。通过在移液管中加入G蛋白激活剂NaF(1 mM),从 -40 mV激活的电流的衰减速率显著降低,并且通过短暂批量应用NaF(10 mM)也会使其不可逆地衰减。通过在移液管中加入高浓度(10 mM)的乙二醇四乙酸(EGTA),这种效应显著降低,表明钙依赖过程参与其中。提示NaF激活鸟嘌呤核苷酸结合蛋白会导致海马CA1细胞中HVA钙电流衰减的长期减弱。