首页> 美国卫生研究院文献>The Journal of General Physiology >The conserved potassium channel filter can have distinct ion binding profiles: Structural analysis of rubidium cesium and barium binding in NaK2K
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The conserved potassium channel filter can have distinct ion binding profiles: Structural analysis of rubidium cesium and barium binding in NaK2K

机译:保守的钾通道过滤器可以具有独特的离子结合特性:NaK2K中Structural铯和钡结合的结构分析

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摘要

Potassium channels are highly selective for K+ over the smaller Na+. Intriguingly, they are permeable to larger monovalent cations such as Rb+ and Cs+ but are specifically blocked by the similarly sized Ba2+. In this study, we used structural analysis to determine the binding profiles for these permeant and blocking ions in the selectivity filter of the potassium-selective NaK channel mutant NaK2K and also performed permeation experiments using single-channel recordings. Our data revealed that some ion binding properties of NaK2K are distinct from those of the canonical K+ channels KcsA and MthK. Rb+ bound at sites 1, 3, and 4 in NaK2K, as it does in KcsA. Cs+, however, bound predominantly at sites 1 and 3 in NaK2K, whereas it binds at sites 1, 3, and 4 in KcsA. Moreover, Ba2+ binding in NaK2K was distinct from that which has been observed in KcsA and MthK, even though all of these channels show similar Ba2+ block. In the presence of K+, Ba2+ bound to the NaK2K channel at site 3 in conjunction with a K+ at site 1; this led to a prolonged block of the channel (the external K+-dependent Ba2+ lock-in state). In the absence of K+, however, Ba2+ acts as a permeating blocker. We found that, under these conditions, Ba2+ bound at sites 1 or 0 as well as site 3, allowing it to enter the filter from the intracellular side and exit from the extracellular side. The difference in the Ba2+ binding profile in the presence and absence of K+ thus provides a structural explanation for the short and prolonged Ba2+ block observed in NaK2K.
机译:钾通道对较小的Na + 的K + 具有高度的选择性。有趣的是,它们对较大的一价阳离子(如Rb + 和Cs + )具有渗透性,但被类似大小的Ba 2 + 特异性阻断。在这项研究中,我们使用结构分析来确定钾选择性NaK通道突变体NaK2K的选择性过滤器中这些渗透离子和封闭离子的结合曲线,并使用单通道记录进行渗透实验。我们的数据表明,NaK2K的某些离子键合特性不同于规范的K + 通道KcsA和MthK。与在KcsA中一样,Rb + 在NaK2K中的位点1、3和4处结合。但是,Cs + 主要在NaK2K的1和3位结合,而在KcsA的1、3和4位结合。此外,即使所有这些通道都显示相似的Ba 2 + 阻滞,NaK2K中的Ba 2 + 结合也不同于在KcsA和MthK中观察到的结合。在存在K + 的情况下,Ba 2 + 与站点1的K + 结合在站点3的NaK2K通道上;这导致通道的阻塞时间延长(外部K + 依赖的Ba 2 + 锁定状态)。但是,在没有K + 的情况下,Ba 2 + 充当渗透阻滞剂。我们发现,在这些条件下,Ba 2 + 结合在位点1或0以及位点3,使其从细胞内侧进入过滤器并从细胞外侧离开。在存在和不存在K + 的情况下Ba 2 + 结合特征的差异为Ba 2 + 在NaK2K中观察到阻滞。

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