Kostyuk P G
Bogomoletz Institute of Physiology, National Academy of Sciences, Kiev, Ukraine.
Neuroscience. 1999;92(4):1157-63. doi: 10.1016/s0306-4522(99)00221-3.
Low-voltage activated Ca2+ channels, which possess unique properties quite different from those of common (high-voltage activated) channels, were discovered 15 years ago but the first alpha1 subunit has only recently been identified which might provide their structural basis. However, simultaneously, extensive data are being accumulated on the functional diversity of low-voltage activated Ca2+ currents with regard to their pharmacological sensitivity, ionic selectivity, activation and inactivation kinetics. Such diversity corresponds to equally prominent heterogeneity in the location and function of the channels. This commentary summarizes the data available in an attempt to predict a possibly wider structural subdivision of low-voltage activated Ca2+ channels into subtypes.
低电压激活的Ca2+通道具有与普通(高电压激活)通道截然不同的独特特性,它于15年前被发现,但首个可能为其提供结构基础的α1亚基直到最近才被鉴定出来。然而,与此同时,关于低电压激活的Ca2+电流在药理敏感性、离子选择性、激活和失活动力学方面的功能多样性,正在积累大量数据。这种多样性对应于通道在位置和功能上同样显著的异质性。本评论总结了现有数据,试图预测低电压激活的Ca2+通道可能更广泛地细分为亚型的情况。