Böhm H J
BASF AG, Central Research, Ludwigshafen, Germany.
J Comput Aided Mol Des. 1994 Jun;8(3):243-56. doi: 10.1007/BF00126743.
A new simple empirical function has been developed that estimates the free energy of binding for a given protein-ligand complex of known 3D structure. The function takes into account hydrogen bonds, ionic interactions, the lipophilic protein-ligand contact surface and the number of rotatable bonds in the ligand. The dataset for the calibration of the function consists of 45 protein-ligand complexes. The new energy function reproduces the binding constants (ranging from 2.5.10(-2) to 4.10(-14) M, corresponding to binding energies between -9 and -76 kJ/mol) of the dataset with a standard deviation of 7.9 kJ/mol, corresponding to 1.4 orders of magnitude in binding affinity. The individual contributions to protein-ligand binding obtained from the scoring function are: ideal neutral hydrogen bond: -4.7 kJ/mol; ideal ionic interaction: -8.3 kJ/mol; lipophilic contact: -0.17 kJ/mol A2; one rotatable bond in the ligand: +1.4 kJ/mol. The function also contains a constant contribution (+5.4 kJ/mol) which may be rationalized as loss of translational and rotational entropy. The function can be evaluated very fast and is therefore also suitable for application in a 3D database search or de novo ligand design program such as LUDI.
已经开发出一种新的简单经验函数,用于估算已知三维结构的特定蛋白质-配体复合物的结合自由能。该函数考虑了氢键、离子相互作用、亲脂性蛋白质-配体接触表面以及配体中可旋转键的数量。用于校准该函数的数据集由45个蛋白质-配体复合物组成。新的能量函数再现了数据集中的结合常数(范围从2.5×10⁻²到4×10⁻¹⁴ M,对应于-9至-76 kJ/mol之间的结合能),标准偏差为7.9 kJ/mol,对应于结合亲和力的1.4个数量级。从评分函数获得的对蛋白质-配体结合的个体贡献为:理想中性氢键:-4.7 kJ/mol;理想离子相互作用:-8.3 kJ/mol;亲脂性接触:-0.17 kJ/mol Ų;配体中的一个可旋转键:+1.4 kJ/mol。该函数还包含一个常数贡献(+5.4 kJ/mol),这可以合理地解释为平移和旋转熵的损失。该函数可以非常快速地求值,因此也适用于三维数据库搜索或从头配体设计程序,如LUDI。