Lee J H, Gomora J C, Cribbs L L, Perez-Reyes E
Department of Physiology, Loyola University Medical Center, Maywood, Illinois 60153 USA.
Biophys J. 1999 Dec;77(6):3034-42. doi: 10.1016/S0006-3495(99)77134-1.
Nickel has been proposed to be a selective blocker of low-voltage-activated, T-type calcium channels. However, studies on cloned high-voltage-activated Ca(2+) channels indicated that some subtypes, such as alpha1E, are also blocked by low micromolar concentrations of NiCl(2). There are considerable differences in the sensitivity to Ni(2+) among native T-type currents, leading to the hypothesis that there may be more than one T-type channel. We confirmed part of this hypothesis by cloning three novel Ca(2+) channels, alpha1G, H, and I, whose currents are nearly identical to the biophysical properties of native T-type channels. In this study we examined the nickel block of these cloned T-type channels expressed in both Xenopus oocytes and HEK-293 cells (10 mM Ba(2+)). Only alpha1H currents were sensitive to low micromolar concentrations (IC(50) = 13 microM). Much higher concentrations were required to half-block alpha1I (216 microM) and alpha1G currents (250 microM). Nickel block varied with the test potential, with less block at potentials above -30 mV. Outward currents through the T channels were blocked even less. We show that depolarizations can unblock the channel and that this can occur in the absence of permeating ions. We conclude that Ni(2+) is only a selective blocker of alpha1H currents and that the concentrations required to block alpha1G and alpha1I will also affect high-voltage-activated calcium currents.
镍已被认为是低电压激活的T型钙通道的选择性阻滞剂。然而,对克隆的高电压激活钙通道的研究表明,某些亚型,如α1E,也会被低微摩尔浓度的NiCl₂阻断。天然T型电流对Ni²⁺的敏感性存在相当大的差异,这导致了可能存在不止一种T型通道的假设。我们通过克隆三种新型钙通道α1G、H和I证实了这一假设的一部分,它们的电流与天然T型通道的生物物理特性几乎相同。在本研究中,我们检测了在非洲爪蟾卵母细胞和HEK-293细胞(10 mM Ba²⁺)中表达的这些克隆T型通道的镍阻断情况。只有α1H电流对低微摩尔浓度敏感(IC₅₀ = 13 μM)。半阻断α1I(216 μM)和α1G电流(250 μM)则需要高得多的浓度。镍阻断随测试电位而变化,在高于 -30 mV的电位下阻断较少。通过T通道的外向电流阻断更少。我们表明去极化可以使通道解阻断,并且这可以在没有渗透离子的情况下发生。我们得出结论,Ni²⁺只是α1H电流的选择性阻滞剂,阻断α1G和α1I所需的浓度也会影响高电压激活的钙电流。