Khandelwal Akash, Lukacova Viera, Kroll Daniel M, Raha Soumyendu, Comez Dogan, Balaz Stefan
J Phys Chem A. 2005 Jul 28;109(29):6387-91. doi: 10.1021/jp051105x.
The linear response (LR) approximation and similar approaches belong to practical methods for estimation of ligand-receptor binding affinities. The approaches correlate experimental binding affinities with the changes upon binding of the ligand electrostatic and van der Waals energies and of solvation characteristics. These attributes are expressed as ensemble averages that are obtained by conformational sampling of the protein-ligand complex and of the free ligand by molecular dynamics or Monte Carlo simulations. We observed that outliers in the LR correlations occasionally exhibit major conformational changes of the complex during sampling. We treated the situation as a multimode binding case, for which the observed association constant is the sum of the partial association constants of individual states/modes. The resulting nonlinear expression for the binding affinities contains all the LR variables for individual modes that are scaled by the same two to four adjustable parameters as in the one-mode LR equation. The multimode method was applied to inhibitors of a matrix metalloproteinase, where this treatment improved the explained variance in experimental activity from 75% for the unimode case to about 85%. The predictive ability scaled accordingly, as verified by extensive cross-validations.
线性响应(LR)近似法及类似方法属于估算配体-受体结合亲和力的实用方法。这些方法将实验结合亲和力与配体静电能、范德华能以及溶剂化特征结合时的变化关联起来。这些属性表示为通过分子动力学或蒙特卡罗模拟对蛋白质-配体复合物和游离配体进行构象采样而获得的系综平均值。我们观察到,LR相关性中的异常值在采样过程中偶尔会表现出复合物的主要构象变化。我们将这种情况视为多模式结合情况,对于这种情况,观察到的缔合常数是各个状态/模式的部分缔合常数之和。由此产生的结合亲和力的非线性表达式包含各个模式的所有LR变量,这些变量由与单模式LR方程中相同的两到四个可调参数进行缩放。多模式方法应用于基质金属蛋白酶的抑制剂,这种处理将实验活性的可解释方差从单模式情况下的75%提高到了约85%。如通过广泛的交叉验证所证实的,预测能力也相应提升。