Shimizu Hirofumi, Toyoshima Chikashi, Oiki Shigetoshi
Department of Physiology, Fukui Medical University, Fukui, 910-1193 Japan.
Jpn J Physiol. 2003 Feb;53(1):25-34. doi: 10.2170/jjphysiol.53.25.
The fast inactivation of the human ether-à-go-go related gene product (HERG) channel is a form of C-type inactivation and is decelerated by external tetraethylammonium (TEA) and potassium. From the time constant of inactivation, the dissociation constants of TEA (K(TEA)) and potassium (K(K)) to the inactivation-impeding site were evaluated. K(TEA) was found to exhibit unexpected voltage dependence: K(TEA) decreased with depolarization. This was opposite the voltage dependence of K(K) on inactivation, in which permeating potassium impeded closure of the inactivation gate upon binding to a site in the pore (a "foot-in-the-door" mechanism). Further experiments on inactivation revealed anomalous mole fraction effects between permeating alkali cations and TEA, while no anomalous effects were seen between permeating ion species (K+, Rb+, Cs+). The results indicate that TEA and permeating ions impede inactivation through binding to different but closely interacting sites. K(TEA) was influenced by permeating ions through their bindings in the pore. As the size of the occupied ion was increased the dissociation constant of TEA to the ion-occupied pore decreased. Thus, we conclude that an ion bound to the inactivation-impeding site in the selectivity filter is located in close proximity to TEA bound at the entrance of the filter. The order of affinity of alkali cations for the inactivation-impeding site, Rb+ > Cs+ > K+, indicated that the selectivity of the site differed significantly from permeation selectivity, K+ > Rb+ > Cs+.
人类醚 - 去极化相关基因产物(HERG)通道的快速失活是C型失活的一种形式,可被细胞外四乙铵(TEA)和钾离子减缓。根据失活的时间常数,评估了TEA(K(TEA))和钾离子(K(K))与失活阻碍位点的解离常数。发现K(TEA)表现出意外的电压依赖性:K(TEA)随着去极化而降低。这与K(K)对失活的电压依赖性相反,其中通透的钾离子在与孔中的位点结合时会阻碍失活门的关闭(一种“脚踏入门”机制)。关于失活的进一步实验揭示了通透的碱金属阳离子与TEA之间存在异常摩尔分数效应,而在通透离子种类(K +、Rb +、Cs +)之间未观察到异常效应。结果表明,TEA和通透离子通过结合到不同但紧密相互作用的位点来阻碍失活。K(TEA)受到通透离子在孔中结合的影响。随着占据离子尺寸的增加,TEA与离子占据孔的解离常数降低。因此,我们得出结论,与失活阻碍位点结合在选择性过滤器中的离子位于与在过滤器入口处结合的TEA紧密相邻的位置。碱金属阳离子对失活阻碍位点的亲和力顺序为Rb + > Cs + > K +,表明该位点的选择性与通透选择性K + > Rb + > Cs +有显著差异。