Howard Hughes Medical Institute and Department of Physiology, University of Texas Southwestern Medical Center, Dallas, TX 75390-9040, USA.
J Mol Biol. 2011 Aug 5;411(1):27-35. doi: 10.1016/j.jmb.2011.04.058. Epub 2011 Apr 30.
While selective for K⁺, K⁺ channels vary significantly among their rate of ion permeation. Here, we probe the effect of steric hindrance and electrostatics within the ion conduction pathway on K⁺ permeation in the MthK K⁺ channel using structure-based mutagenesis combined with single-channel electrophysiology and X-ray crystallography. We demonstrate that changes in side-chain size and polarity at Ala88, which forms the constriction point of the open MthK pore, have profound effects on single-channel conductance as well as open probability. We also reveal that the negatively charged Glu92s at the intracellular entrance of the open pore form an electrostatic trap, which stabilizes a hydrated K⁺ and facilitates ion permeation. This electrostatic attraction is also responsible for intracellular divalent blockage, which renders the channel inward rectified in the presence of Ca²⁺. In light of the high structural conservation of the selectivity filter, the size and chemical environment differences within the portion of the ion conduction pathway other than the filter are likely the determinants for the conductance variations among K⁺ channels.
虽然对 K⁺具有选择性,但 K⁺通道在离子渗透速率方面差异很大。在这里,我们使用基于结构的诱变结合单通道电生理学和 X 射线晶体学来研究空间位阻和离子传导途径中的静电效应对 MthK K⁺通道中 K⁺渗透的影响。我们证明了在 Ala88 处侧链大小和极性的变化,Ala88 形成了开放 MthK 孔的缩窄点,对单通道电导和开放概率有深远的影响。我们还揭示了在开放孔的胞内入口处带负电荷的 Glu92s 形成静电陷阱,稳定了水合 K⁺并促进了离子渗透。这种静电吸引也是细胞内二价阻断的原因,使通道在 Ca²⁺存在下呈现内向整流。鉴于选择性过滤器的高度结构保守性,除过滤器以外的离子传导途径部分的大小和化学环境差异可能是 K⁺通道电导变化的决定因素。