Instituto Argentino de Matemática Alberto P. Calderón, CONICET (National Research Council), Saavedra 15, Buenos Aires 1083, Argentina.
J Chem Phys. 2012 Dec 21;137(23):231101. doi: 10.1063/1.4772603.
Nanoscale solvent confinement at the protein-water interface promotes dipole orientations that are not aligned with the internal electrostatic field of a protein, yielding what we term epistructural polarization. To quantify this effect, an equation is derived from first principles relating epistructural polarization with the magnitude of local distortions in water coordination causative of interfacial tension. The equation defines a nanoscale electrostatic model of water and enables an estimation of protein denaturation free energies and the inference of hot spots for protein associations. The theoretical results are validated vis-à-vis calorimetric data, revealing the destabilizing effect of epistructural polarization and its molecular origin.
纳米尺度溶剂在蛋白质-水界面的限制作用促进了偶极子取向,这些取向与蛋白质的内部电场不匹配,产生了我们所谓的结构极化。为了量化这种效应,从第一性原理推导出一个方程,将结构极化与界面张力引起的水配位局部变形的大小联系起来。该方程定义了一个纳米尺度的水分子静电模型,可用于估计蛋白质变性自由能,并推断蛋白质相互作用的热点。理论结果通过量热数据得到验证,揭示了结构极化的失稳作用及其分子起源。