Carl A, Bayguinov O, Shuttleworth C W, Ward S M, Sanders K M
Department of Physiology, University of Nevada School of Medicine, Reno 89557-0046.
Am J Physiol. 1995 Mar;268(3 Pt 1):C619-27. doi: 10.1152/ajpcell.1995.268.3.C619.
The role of Ca(2+)-activated K+ channels (BK channels) in the canine colon was evaluated by testing the effects of charybdotoxin (ChTX) and tetraethylammonium on K+ currents of isolated myocytes and on electrical and mechanical activity of tissue strips. ChTX blocked Ca(2+)-activated outward current [IK(Ca)] in a dose- and voltage-dependent manner. No significant differences in IK(Ca) density, ChTX block, or Ca2+ sensitivity of BK channels were observed between circular and longitudinal myocytes. ChTX (100 nM) blocked 60% of current at +80 mV. Delayed rectifier current was not inhibited by 100 nM ChTX. In the absence of agonists, ChTX did not affect electrical or mechanical activity of circular muscle strips. In the presence of 10(-6) M BAY K 8644 or 10(-6) M acetylcholine, ChTX increased slow-wave duration and amplitude, induced membrane potential oscillations, and potentiated contraction. In unstimulated longitudinal muscle strips, ChTX depolarized the tissue, increased burst duration and spiking frequency, and resulted in an increase in contractions. These results indicate that BK channels are important regulators of colonic motility. In the longitudinal layer, BK channels are involved in setting membrane potential and determine excitability. In the circular layer, ChTX-sensitive channels do not participate in the in vitro basal electrical activity but limit the responses to excitatory agonists.
通过检测蝎毒素(ChTX)和四乙铵对分离的心肌细胞钾电流以及组织条带电活动和机械活动的影响,评估了犬结肠中钙激活钾通道(BK通道)的作用。ChTX以剂量和电压依赖性方式阻断钙激活外向电流[IK(Ca)]。在环形和纵行肌细胞之间,未观察到BK通道的IK(Ca)密度、ChTX阻断或钙敏感性存在显著差异。ChTX(100 nM)在+80 mV时阻断60%的电流。延迟整流电流不受100 nM ChTX抑制。在无激动剂的情况下,ChTX不影响环形肌条带的电活动或机械活动。在存在10(-6) M 贝前列素K 8644或10(-6) M 乙酰胆碱的情况下,ChTX增加慢波持续时间和幅度,诱导膜电位振荡,并增强收缩。在未受刺激的纵行肌条带中,ChTX使组织去极化,增加爆发持续时间和发放频率,并导致收缩增加。这些结果表明,BK通道是结肠运动的重要调节因子。在纵行层中,BK通道参与设定膜电位并决定兴奋性。在环形层中,ChTX敏感通道不参与体外基础电活动,但限制对兴奋性激动剂的反应。