Yeromin Andriy V, Roos Jack, Stauderman Kenneth A, Cahalan Michael D
Department of Physiology and Biophysics, University of California, Irvine, CA 92697-4561, USA.
J Gen Physiol. 2004 Feb;123(2):167-82. doi: 10.1085/jgp.200308982.
Using whole-cell recording in Drosophila S2 cells, we characterized a Ca(2+)-selective current that is activated by depletion of intracellular Ca2+ stores. Passive store depletion with a Ca(2+)-free pipette solution containing 12 mM BAPTA activated an inwardly rectifying Ca2+ current with a reversal potential >60 mV. Inward currents developed with a delay and reached a maximum of 20-50 pA at -110 mV. This current doubled in amplitude upon increasing external Ca2+ from 2 to 20 mM and was not affected by substitution of choline for Na+. A pipette solution containing approximately 300 nM free Ca2+ and 10 mM EGTA prevented spontaneous activation, but Ca2+ current activated promptly upon application of ionomycin or thapsigargin, or during dialysis with IP3. Isotonic substitution of 20 mM Ca2+ by test divalent cations revealed a selectivity sequence of Ba2+ > Sr2+ > Ca2+ >> Mg2+. Ba2+ and Sr2+ currents inactivated within seconds of exposure to zero-Ca2+ solution at a holding potential of 10 mV. Inactivation of Ba2+ and Sr2+ currents showed recovery during strong hyperpolarizing pulses. Noise analysis provided an estimate of unitary conductance values in 20 mM Ca2+ and Ba2+ of 36 and 420 fS, respectively. Upon removal of all external divalent ions, a transient monovalent current exhibited strong selectivity for Na+ over Cs+. The Ca2+ current was completely and reversibly blocked by Gd3+, with an IC50 value of approximately 50 nM, and was also blocked by 20 microM SKF 96365 and by 20 microM 2-APB. At concentrations between 5 and 14 microM, application of 2-APB increased the magnitude of Ca2+ currents. We conclude that S2 cells express store-operated Ca2+ channels with many of the same biophysical characteristics as CRAC channels in mammalian cells.
利用果蝇S2细胞的全细胞记录技术,我们对一种由细胞内钙库耗竭激活的钙选择性电流进行了表征。用含有12 mM BAPTA的无钙移液管溶液进行被动钙库耗竭,激活了一种内向整流钙电流,其反转电位>60 mV。内向电流延迟出现,在-110 mV时达到最大20 - 50 pA。当外部钙浓度从2 mM增加到20 mM时,该电流幅度翻倍,且不受用胆碱替代钠的影响。含有约300 nM游离钙和10 mM EGTA的移液管溶液可防止自发激活,但在用离子霉素或毒胡萝卜素处理后,或在与IP3透析期间,钙电流会迅速激活。用测试二价阳离子等渗替代20 mM钙,揭示了选择性顺序为Ba2+ > Sr2+ > Ca2+ >> Mg2+。在10 mV的保持电位下,暴露于零钙溶液数秒内,Ba2+和Sr2+电流失活。Ba2+和Sr2+电流的失活在强超极化脉冲期间显示出恢复。噪声分析分别估计了在20 mM钙和Ba2+中的单位电导值为36和420 fS。去除所有外部二价离子后,瞬态单价电流对Na+的选择性远高于Cs+。钙电流被Gd3+完全且可逆地阻断,IC50值约为5 nM,同时也被20 μM SKF 96365和20 μM 2-APB阻断。在5至14 μM的浓度范围内,应用2-APB会增加钙电流的幅度。我们得出结论,S2细胞表达的钙库操纵性钙通道具有许多与哺乳动物细胞中的CRAC通道相同的生物物理特性。