Griepernau Beate, Böckmann Rainer A
Theoretical & Computational Membrane Biology, Center for Bioinformatics, Saarland University, Saarbrücken, Germany.
Biophys J. 2008 Dec 15;95(12):5766-78. doi: 10.1529/biophysj.108.142125. Epub 2008 Oct 10.
The suggestion by Robert Cantor, that drug-induced pressure changes in lipid bilayers can change the conformational equilibrium between open and closed states of membrane proteins and thereby cause anesthesia, attracted much attention lately. Here, we studied the effect of both large external pressure and of 1-alkanols of different chain lengths--some of them anesthetics, others not--on the lateral pressure profiles across dimyristoylphosphatidylcholine (DMPC) bilayers by molecular dynamics simulations. For a pure DMPC bilayer, high pressure both reduced and broadened the tension at the interface hydrophobic/hydrophilic and diminished the repulsion between the phospholipid headgroups. Whereas the effect of ethanol on the lateral pressure profile was similar to the effect of a large external pressure on a DMPC bilayer, long-chain 1-alkanols significantly amplified local maxima and minima in the lateral pressure profile. For most 1-alkanols, external pressure had moderate effects and did not reverse the changes 1-alkanols exerted on the pressure profile. Nevertheless, assuming the bent helix model as a simple geometric model for the transmembrane region of a membrane protein, protein conformational equilibria were shifted in opposite directions by addition of 1-alkanols and additional application of external pressure.
罗伯特·康托提出,药物诱导的脂质双层压力变化可改变膜蛋白开放态与关闭态之间的构象平衡,进而引发麻醉,这一观点近来备受关注。在此,我们通过分子动力学模拟研究了大的外部压力以及不同链长的1-链烷醇(其中一些是麻醉剂,另一些不是)对二肉豆蔻酰磷脂酰胆碱(DMPC)双层膜横向压力分布的影响。对于纯DMPC双层膜,高压既降低又拓宽了疏水/亲水界面处的张力,并减弱了磷脂头部基团之间的排斥力。乙醇对横向压力分布的影响与大的外部压力对DMPC双层膜的影响相似,而长链1-链烷醇显著放大了横向压力分布中的局部最大值和最小值。对于大多数1-链烷醇,外部压力有适度影响,且不会逆转1-链烷醇对压力分布所产生的变化。然而,假设弯曲螺旋模型为膜蛋白跨膜区域的简单几何模型,添加1-链烷醇和额外施加外部压力会使蛋白质构象平衡向相反方向移动。