Rampe D, Triggle D J, Brown A M
Department of Physiology and Molecular Biophysics, Baylor College of Medicine, Houston, Texas.
J Pharmacol Exp Ther. 1987 Oct;243(1):402-7.
MDL 12,330A is a molecule structurally unrelated to other organic Ca++ channel ligands that may alter Ca++ channel function. Using whole cell patch clamp, [3H]PN200-110 binding and 45Ca++ uptake studies, we examined the effects of this compound on voltage-dependent Ca++ channels in rat anterior pituitary cells. At a concentration of 10(-5) M, MDL 12,330A showed little effect on outward K+ current, Na+ current or low-threshold Ca++ current in this cell line. At 10(-6) M, MDL 12,330A reversibly inhibited slow Ca++ current in a voltage-dependent manner. 45Ca++ uptake was also blocked by this compound at 10(-6) M, whereas [3H]PN200-110 binding was stimulated at concentrations of 10(-7) to 10(-6) M. The results are consistent with an interaction of MDL 12,330A with slow Ca++ channels at a site allosterically linked to the 1,4-dihydropyridine binding site.
MDL 12,330A是一种在结构上与其他可能改变钙离子通道功能的有机钙离子通道配体无关的分子。我们使用全细胞膜片钳、[3H]PN200 - 110结合以及45Ca++摄取研究,检测了该化合物对大鼠垂体前叶细胞中电压依赖性钙离子通道的影响。在10(-5) M的浓度下,MDL 12,330A对该细胞系中的外向钾离子电流、钠离子电流或低阈值钙离子电流几乎没有影响。在10(-6) M时,MDL 12,330A以电压依赖性方式可逆地抑制缓慢型钙离子电流。在10(-6) M时,该化合物也能阻断45Ca++摄取,而在10(-7)至10(-6) M的浓度下能刺激[3H]PN200 - 110结合。这些结果与MDL 12,330A在一个与1,4 - 二氢吡啶结合位点变构连接的位点上与缓慢型钙离子通道相互作用一致。