Jogini Vishwanath, Roux Benoît
Department of Physiology & Biophysics, Weill Medical College of Cornell University, New York, NY 10021, USA.
J Mol Biol. 2005 Nov 25;354(2):272-88. doi: 10.1016/j.jmb.2005.09.031. Epub 2005 Sep 30.
Previous calculations using continuum electrostatic calculations showed that a fully hydrated monovalent cation is electrostatically stabilized at the center of the cavity of the KcsA potassium channel. Further analysis demonstrated that this cavity stabilization was controlled by a balance between the unfavorable reaction field due to the finite size of the cavity and the favorable electrostatic field arising from the pore helices. In the present study, continuum electrostatic calculations are used to investigate how the stability of an ion in the intracellular vestibular cavity common to known potassium channels is affected as the inner channel gate opens and the cavity becomes larger and contiguous with the intracellular solution. The X-ray structure of the calcium-activated potassium channel MthK, which was crystallized in the open state, is used to construct models of the KcsA channel in the open state. It is found that, as the channel opens, the barrier at the helix bundle crossing decreases to approximately 0 kcal/mol, but that the ion in the cavity is also significantly destabilized. The results are compared and contrasted with additional calculations performed on the KvAP (voltage-activated) and KirBac1.1 (inward rectifier) channels, as well as models of the pore domain of Shaker in the open and closed state. In conclusion, electrostatic factors give rise to energetic constraints on ion permeation that have important functional consequences on the various K+ channels, and partly explain the presence or absence of charged residues near the inner vestibular entry.
先前使用连续介质静电计算的结果表明,一个完全水合的单价阳离子在KcsA钾通道孔腔中心处受到静电稳定作用。进一步分析表明,这种孔腔稳定作用受限于孔腔有限尺寸所产生的不利反应场与孔螺旋产生的有利静电场之间的平衡。在本研究中,运用连续介质静电计算来探究已知钾通道共有的细胞内前庭孔腔中离子的稳定性,是如何随着通道内门打开、孔腔变大并与细胞内溶液相连通而受到影响的。以处于开放状态结晶的钙激活钾通道MthK的X射线结构为基础,构建开放状态下KcsA通道的模型。研究发现,随着通道打开,螺旋束交叉处的能垒降至约0千卡/摩尔,但孔腔内的离子也会显著失稳。将这些结果与对KvAP(电压激活)通道和KirBac1.1(内向整流)通道以及处于开放和关闭状态的Shaker孔结构域模型所进行的额外计算进行比较和对比。总之,静电因素对离子通透产生能量限制,这对各种钾通道具有重要的功能影响,并部分解释了在内侧前庭入口附近带电残基的存在与否。