High-conductance calcium-activated potassium channels; Structure, pharmacology, and function

被引:298
作者
Kaczorowski, GJ [1 ]
Knaus, HG [1 ]
Leonard, RJ [1 ]
McManus, OB [1 ]
Garcia, ML [1 ]
机构
[1] UNIV INNSBRUCK, INST BIOCHEM PHARMACOL, A-6020 INNSBRUCK, AUSTRIA
关键词
maxi-K channels; charybdotoxin; iberiotoxin; smooth muscle; ion channel purification; slo channels; beta-subunit; K channel agonists; K channel blockers; ion channel pharmacology;
D O I
10.1007/BF02110699
中图分类号
Q6 [生物物理学];
学科分类号
071011 [生物物理学];
摘要
High-conductance calcium-activated potassium (maxi-K) channels comprise a specialized family of K+ channels. They are unique in their dual requirement for depolarization and Ca2+ binding for transition to the open, or conducting, state. Ion conduction through maxi-K channels is blocked by a family of venom-derived peptides, such as charybdotoxin and iberiotoxin. These peptides have been used to study function and structure of maxi-K channels, to identify novel channel modulators, and to follow the purification of functional maxi-K channels from smooth muscle. The channel consists of two dissimilar subunits, alpha and beta. The alpha subunit is a member of the slo Ca2+-activated K+ channel gene family and forms the ion conduction pore. The beta subunit is a structurally unique, membrane spanning protein that contributes to channel gating and pharmacology. Potent, selective maxi-K channel effecters (both agonists and blockers) of low molecular weight have been identified from natural product sources. These agents, together with peptidyl inhibitors and site-directed antibodies raised against alpha and beta subunit sequences, can be used to anatomically map maxi-K channel expression, and to study the physiologic role of maxi-K channels in various tissues. One goal of such investigations is to determine whether maxi-K channels represent novel therapeutic targets.
引用
收藏
页码:255 / 267
页数:13
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