LARGE CONDUCTING POTASSIUM CHANNEL RECONSTITUTED FROM AIRWAY SMOOTH-MUSCLE

被引:36
|
作者
SAVARIA, D
LANOUE, C
CADIEUX, A
ROUSSEAU, E
机构
[1] UNIV SHERBROOKE,FAC MED,DEPT PHYSIOL & BIOPHYS,SHERBROOKE J1H 5N4,QUEBEC,CANADA
[2] UNIV SHERBROOKE,FAC MED,DEPT PHARMACOL,SHERBROOKE J1H 5N4,QUEBEC,CANADA
来源
AMERICAN JOURNAL OF PHYSIOLOGY | 1992年 / 262卷 / 03期
关键词
PLANAR LIPID BILAYERS; CALCIUM-ACTIVATED POTASSIUM CHANNELS; CANINE TRACHEALIS MUSCLE;
D O I
10.1152/ajplung.1992.262.3.L327
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Microsomal fractions were prepared from canine and bovine airway smooth muscle (ASM) by differential and gradient centrifugations. Surface membrane vesicles were characterized by binding assays and incorporated into planar lipid bilayers. Single-channel activities were recorded in symmetric or asymmetric K+ buffer systems and studied under voltage and Ca2+ clamp conditions. A large-conductance K+-selective channel (> 220 pS in 150 mM K+) displaying a high Ca2+, low Ba2+, and charybdotoxin (CTX) sensitivity was identified. Time analysis of single-channel recordings revealed a complex kinetic behavior compatible with the previous schemes proposed for Ca2+-activated K+ channels in a variety of biological surface membranes. We now report that the open probability of the channel at low Ca2+ concentration is enhanced on in vitro phosphorylation, which is mediated via an adenosine 3',5'-cyclic monophosphate-dependent protein kinase. In addition to this characterization at the molecular level, a second series of pharmacological experiments were designed to assess the putative role of this channel in ASM strips. Our results show that 50 nM CTX, a specific inhibitor of the large conducting Ca2+-dependent K+ channel, prevents norepinephrine transient relaxation on carbamylcholine-precontracted ASM strips. It was also shown that CTX reversed the steady-state relaxation induced by vasoactive intestinal peptide and partially antagonized further relaxation induced by cumulative doses of this potent bronchodilatator. Thus it is proposed that the Ca2+-activated K+ channels have a physiological role because they are indirectly activated on stimulation of various membrane receptors via intracellular mechanisms.
引用
收藏
页码:L327 / L336
页数:10
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