Sohma Y, Harris A, Argent B E, Gray M A
Department of Physiological Sciences, University Medical School, Newcastle upon Tyne, England.
Biophys J. 1998 Jan;74(1):199-209. doi: 10.1016/S0006-3495(98)77780-X.
We have recently shown that a maxi-K+ channel from vas deferens epithelial cells contains two Ba2+-binding sites accessible from the external side: a "flickering" site located deep in the channel pore and a "slow" site located close to the extracellular mouth of the channel. Using the patch-clamp technique, we have now studied the effect of internal Ba2+ on this channel. Cytoplasmic Ba2+ produced a voltage- and concentration-dependent "slow" type of block with a dissociation constant of approximately 100 microM. However, based on its voltage dependence and sensitivity to K+ concentration, this block was clearly different from the external "slow" Ba2+ block previously described. Kinetic analysis also revealed a novel "fast flickering" block restricted to channel bursts, with an unblocking rate of approximately 310 s(-1), some 10-fold faster than the external "flickering" block. Taken together, these results show that this channel contains multiple Ba2+-binding sites within the conduction pore. We have incorporated this information into a new model of Ba2+ block, a novel feature of which is that internal "slow" block results from the binding of at least two Ba2+ ions. Our results suggest that current models for Ba2+ block of maxi-K+ channels need to be revised.
我们最近发现,输精管上皮细胞中的一种大电导钾通道在外侧有两个可与Ba2+结合的位点:一个位于通道孔深处的“闪烁”位点和一个靠近通道细胞外口的“慢速”位点。利用膜片钳技术,我们现在研究了胞内Ba2+对该通道的影响。胞质Ba2+产生了一种电压和浓度依赖性的“慢速”阻断类型,解离常数约为100 microM。然而,基于其电压依赖性和对K+浓度的敏感性,这种阻断明显不同于先前描述的外部“慢速”Ba2+阻断。动力学分析还揭示了一种仅限于通道爆发的新型“快速闪烁”阻断,其解除阻断速率约为310 s(-1),比外部“闪烁”阻断快约10倍。综上所述,这些结果表明该通道在传导孔内含有多个Ba2+结合位点。我们已将此信息纳入一个新的Ba2+阻断模型,其一个新特点是内部“慢速”阻断是由至少两个Ba2+离子的结合引起的。我们的结果表明,目前关于大电导钾通道Ba2+阻断的模型需要修正。