Lipkind G M, Hanck D A, Fozzard H A
Department of Biochemistry and Molecular Biology, University of Chicago, IL 60637, USA.
Proc Natl Acad Sci U S A. 1995 Sep 26;92(20):9215-9. doi: 10.1073/pnas.92.20.9215.
Mutation studies have identified a region of the S5-S6 loop of voltage-gated K+ channels (P region) responsible for teraethylammonium (TEA) block and permeation/selectivity properties. We previously modeled a similar region of the Na+ channel as four beta-hairpins with the C strands from each of the domains forming the external vestibule and with charged residues at the beta-turns forming the selectivity filter. However, the K+ channel P region amino acid composition is much more hydrophobic in this area. Here we propose a structural motif for the K+ channel pore based on the following postulates (Kv2.1 numbering). (i) The external TEA binding site is formed by four Tyr-380 residues; P loop residues participating in the internal TEA binding site are four Met-371 and Thr-372 residues. (ii) P regions form extended hairpins with beta-turns in sequence ITMT. (iii) only C ends of hairpins form the inner walls of the pore. (iv) They are extended nonregular strands with backbone carbonyl oxygens of segment VGYGD facing the pore with the conformation BRLRL. (v) Juxtaposition of P loops of the four subunits forms the pore. Fitting the external and internal TEA sites to TEA molecules predicts an hourglass-like pore with the narrowest point (GYG) as wide as 5.5 A, suggesting that selectivity may be achieved by interactions of carbonyls with partially hydrated K+. Other potential cation binding sites also exist in the pore.
突变研究已经确定了电压门控钾离子通道(P区)的S5-S6环区域,该区域负责四乙铵(TEA)阻断以及通透/选择性特性。我们之前将钠通道的类似区域建模为四个β-发夹结构,每个结构域的C链形成外部前庭,β-转角处的带电残基形成选择性过滤器。然而,钾离子通道P区在该区域的氨基酸组成更具疏水性。在此,我们基于以下假设(按照Kv2.1编号)提出钾离子通道孔的结构基序。(i)外部TEA结合位点由四个Tyr-380残基形成;参与内部TEA结合位点的P环残基是四个Met-371和Thr-372残基。(ii)P区形成具有ITMT序列β-转角的延伸发夹结构。(iii)只有发夹结构的C端形成孔的内壁。(iv)它们是延伸的不规则链,VGYGD片段的主链羰基氧以BRLRL构象面向孔。(v)四个亚基的P环并列形成孔。将外部和内部TEA位点与TEA分子拟合,预测出一个沙漏状的孔,最窄点(GYG)宽达5.5埃,这表明选择性可能是通过羰基与部分水合钾离子的相互作用实现的。孔中还存在其他潜在的阳离子结合位点。