Department of Pharmaceutical and Biomedical Sciences, South Carolina College of Pharmacy, University of South Carolina, Coker Life Sciences Building, Room 609D, 715 Sumter St., Columbia, SC 29208, USA.
Pflugers Arch. 2013 Jul;465(7):965-75. doi: 10.1007/s00424-012-1214-8. Epub 2013 Jan 24.
Recent studies have demonstrated the importance of large-conductance Ca(2+)-activated K(+) (BK) channels in detrusor smooth muscle (DSM) function in vitro and in vivo. However, in-depth characterization of human native DSM single BK channels has not yet been provided. Here, we conducted single-channel recordings from excised patches from native human DSM cells. Inside-out and outside-out recordings in high K(+) symmetrical solution (containing 140 mM KCl and ~300 nM free Ca(2+)) showed single-channel conductance of 215-220 pS, half-maximum constant for activation of ~+75 to +80 mV, and low probability of opening (P o) at +20 mV that increased ~10-fold at +40 mV and ~60-fold at +60 mV. Using the inside-out configuration at +30 mV, reduction of intracellular [Ca(2+)] from ~300 nM to Ca(2+)-free decreased the P o by ~85 %, whereas elevation to ~800 nM increased P o by ~50-fold. The BK channel activator NS1619 (10 μM) enhanced the P o by ~10-fold at +30 mV; subsequent application of the selective BK channel inhibitor paxilline (500 nM) blocked the activity. Changes in intracellular [Ca(2+)] or the addition of NS1619 did not significantly alter the current amplitude or single-channel conductance. This is the first report to provide biophysical and pharmacological profiles of native human DSM single BK channels highlighting their importance in regulating human DSM excitability.
最近的研究表明,大电导钙激活钾(BK)通道在体外和体内的逼尿肌平滑肌(DSM)功能中具有重要作用。然而,尚未对人源 DSM 单通道 BK 通道进行深入的特征描述。在这里,我们从人源 DSM 细胞的天然细胞片中进行了单通道记录。在高钾(K+)对称溶液(含有 140 mM KCl 和约 300 nM 游离 Ca2+)中进行的内面向外和外面向内记录显示,单通道电导为 215-220 pS,激活的半最大常数约为+75 至+80 mV,在+20 mV 时的开口概率(P o)较低,在+40 mV 时增加约 10 倍,在+60 mV 时增加约 60 倍。在+30 mV 时使用内面向外构型,将细胞内[Ca2+]从约 300 nM 降低至无 Ca2+,会使 P o降低约 85%,而将其升高至约 800 nM 会使 P o增加约 50 倍。BK 通道激活剂 NS1619(10 μM)在+30 mV 时将 P o增强约 10 倍;随后应用选择性 BK 通道抑制剂 paxilline(500 nM)阻断了其活性。细胞内[Ca2+]的变化或 NS1619 的添加均未显著改变电流幅度或单通道电导。这是首次报道人源 DSM 单通道 BK 通道的生物物理和药理学特征,强调了它们在调节人源 DSM 兴奋性中的重要性。