Lim Carmay, Dudev Todor
Institute of Biomedical Sciences, Academia Sinica, Taipei, 11529, Taiwan.
Department of Chemistry, National Tsing Hua University, Hsinchu, 300, Taiwan.
Met Ions Life Sci. 2016;16:325-47. doi: 10.1007/978-3-319-21756-7_10.
Transport of Na(+) and K(+) ions across the cell membrane is carried out by specialized pore-forming ion channel proteins, which exert tight control on electrical signals in cells by regulating the inward/outward flow of the respective cation. As Na(+) and K(+) ions are both present in the body fluids, their respective ion channels should discriminate with high fidelity between the two competing metal ions, conducting the native cation while rejecting its monovalent contender (and other ions present in the cellular/extracellular milieu). Indeed, monovalent ion channels are characterized by remarkable metal selectivity. This striking ion selectivity of monovalent ion channels is astonishing in view of the close similarity between Na(+) and K(+): both are spherical alkali cations with the same charge, analogous chemical and physical properties, and similar ionic radii. The monovalent ion channel selectivity filters (SFs), which dictate the selectivity of the channel, differ in oligomericity, composition, overall charge, pore size, and solvent accessibility. This diversity of SFs raises the following intriguing questions: (1) What factors govern the metal competition in these SFs? (2) Which of these factors are exploited in achieving K(+) or Na(+) selectivity in the different types of monovalent channel SFs? These questions are addressed herein by summarizing results from recent studies. The results show that over billions of years of evolution, the SFs of potassium and sodium ion channels have adapted to the specific physicochemical properties of the cognate ion, using various strategies to enable them to efficiently select the native ion among its contenders.
Na⁺和K⁺离子跨细胞膜的转运是由专门的成孔离子通道蛋白完成的,这些蛋白通过调节相应阳离子的内向/外向流动,对细胞内的电信号进行严格控制。由于Na⁺和K⁺离子都存在于体液中,它们各自的离子通道应该能够高保真地区分这两种相互竞争的金属离子,传导天然阳离子,同时排斥其单价竞争者(以及细胞内/细胞外环境中存在的其他离子)。事实上,单价离子通道具有显著的金属选择性。鉴于Na⁺和K⁺之间的相似性,单价离子通道这种惊人的离子选择性令人惊讶:两者都是带相同电荷的球形碱金属阳离子,具有相似的化学和物理性质以及相近的离子半径。决定通道选择性的单价离子通道选择性过滤器(SFs)在寡聚性、组成、总电荷、孔径和溶剂可及性方面存在差异。SFs的这种多样性引发了以下有趣的问题:(1)哪些因素决定了这些SFs中的金属竞争?(2)在不同类型的单价通道SFs中,哪些因素被用于实现K⁺或Na⁺选择性?本文通过总结近期研究结果来回答这些问题。结果表明,在数十亿年的进化过程中,钾离子通道和钠离子通道的SFs已经适应了同源离子的特定物理化学性质,采用了各种策略,使它们能够在竞争者中有效地选择天然离子。