Matsuda H
Pflugers Arch. 1986 Nov;407(5):465-75. doi: 10.1007/BF00657502.
An inward current characterized by a slow inactivation, was induced when the extracellular Ca2+ concentration was reduced by EGTA. It was suppressed by replacing external Na+ with Tris+ or by D-600, increased by epinephrine, and was not affected by TTX. These findings suggest that this current is carried by Na+ ions through the Ca channels. The Na current decreased in amplitude as the concentration of external divalent cations was elevated. Blocking the Na current by divalent cations could be approximated by a bimolecular interaction between divalent cation and channel, with a dissociation constant of 1.2 microM for Ca2+ and 60 microM for Mg2+. Single channel currents were recorded in the cell-attached configuration. With a pipette solution of pCa = 7.5 or pCa greater than 8, the single channel I - V relationship was linear and the slope conductance was 70-75 pS. For 40 mV depolarizations from the resting potential, unitary currents were smaller at pCa = 6 than at pCa = 7.5. However, single channel events, which were observed after the repolarizing step to the resting potential, were much the same amplitude. The open time histogram was fitted with a single exponential having a time constant of 1.9 ms at around -40 mV (pCa greater than 8, with 5 microM Bay K 8644 in the bath solution), which was decreased with increasing the Ca2+ concentration in the pipette solution. Noise power spectra of patch currents at pCa = 6 revealed a high-frequency component at around 1500 Hz. These results suggest that Ca binding to the sites with a high affinity for Ca2+ blocks the Na conductance in Ca channels. Reduction of the unitary current at higher concentrations of Ca2+ might be attributed to a rapid block by Ca2+.
当用乙二醇双四乙酸(EGTA)降低细胞外钙离子浓度时,可诱导出一种具有缓慢失活特征的内向电流。用三羟甲基氨基甲烷(Tris⁺)替代细胞外钠离子或使用D - 600可抑制该电流,肾上腺素可使其增强,且该电流不受河豚毒素(TTX)影响。这些发现表明,此电流是由钠离子通过钙通道传导的。随着细胞外二价阳离子浓度升高,钠电流幅度减小。二价阳离子对钠电流的阻断作用可近似用二价阳离子与通道之间的双分子相互作用来描述,钙离子(Ca²⁺)的解离常数为1.2微摩尔,镁离子(Mg²⁺)为60微摩尔。在细胞贴附模式下记录到了单通道电流。当移液管溶液的游离钙离子浓度(pCa) = 7.5或pCa大于8时,单通道电流 - 电压(I - V)关系呈线性,斜率电导为70 - 75皮西门子(pS)。对于从静息电位去极化40毫伏的情况,pCa = 6时的单位电流小于pCa = 7.5时的单位电流。然而,在复极化回到静息电位后观察到的单通道事件,其幅度大致相同。开放时间直方图拟合为单指数函数,在约 - 40毫伏时(pCa大于8,浴液中含有5微摩尔的Bay K 8644)时间常数为1.9毫秒,随着移液管溶液中钙离子浓度增加,该时间常数减小。pCa = 6时膜片电流的噪声功率谱在约1500赫兹处显示出一个高频成分。这些结果表明,钙离子与对Ca²⁺具有高亲和力的位点结合会阻断钙通道中的钠电导。在较高钙离子浓度下单位电流的降低可能归因于Ca²⁺的快速阻断作用。