Ehrlich B E, Jacobson A R, Hinrichsen R, Sayre L M, Forte M A
Department of Medicine and Physiology, University of Connecticut Health Center, Farmington 06032.
Proc Natl Acad Sci U S A. 1988 Aug;85(15):5718-22. doi: 10.1073/pnas.85.15.5718.
Although the voltage-sensitive Ca channel present in Paramecium has been subjected to detailed physiological and genetic analysis, no organic ligands have been described that block this channel with high affinity and that ultimately can be used to identify channel components. Based on a previous observation that the naphthalene sulfonamide calmodulin antagonist W-7 can block Paramecium Ca channels at high concentration, we have synthesized analogs of W-7 that block these channels at concentrations of less than 1 microM. The effectiveness of these compounds was tested both by a sensitive behavioral assay and on Ca channels that had been incorporated into planar lipid bilayers. Despite the fact that these compounds are effective Paramecium calmodulin antagonists, two independent lines of evidence suggest that W-7 and its analogs block the Ca channel by a mechanism that is independent of their action on calmodulin. In addition, the sensitivity to W-7 or dihydropyridines of Ca channels present in a number of eukaryotic phyla has been used to identify similarities in Ca channels from widely diverse organisms. It appears that the pharmacological specificity provides a means to group Ca channels.
尽管草履虫中存在的电压敏感性钙通道已接受了详细的生理学和遗传学分析,但尚未发现有能以高亲和力阻断该通道且最终可用于鉴定通道成分的有机配体。基于之前的一项观察结果,即萘磺酰胺钙调蛋白拮抗剂W - 7在高浓度时可阻断草履虫钙通道,我们合成了W - 7的类似物,它们在浓度低于1微摩尔时就能阻断这些通道。这些化合物的有效性通过灵敏的行为分析以及在整合到平面脂质双分子层中的钙通道上进行了测试。尽管这些化合物是有效的草履虫钙调蛋白拮抗剂,但两条独立的证据表明,W - 7及其类似物通过一种与其对钙调蛋白的作用无关的机制阻断钙通道。此外,许多真核生物门中存在的钙通道对W - 7或二氢吡啶的敏感性已被用于鉴定来自广泛不同生物体的钙通道的相似性。药理学特异性似乎提供了一种对钙通道进行分类的方法。