Shadnia Hooman, Wright James S, Anderson James M
Department of Chemistry, Carleton University, Ottawa, Canada K1S 5B6.
J Comput Aided Mol Des. 2009 Mar;23(3):185-94. doi: 10.1007/s10822-008-9250-3. Epub 2008 Nov 7.
A method is described to calculate and visualize the interaction forces of ligand-receptor complexes. Starting from an X-ray crystallographic structure, a "thawing" procedure results in a force-field energy-minimized geometry which is close to the crystallographic starting point. By subtracting non-bonded interactions of the ligand with each amino acid residue and using the resulting force vectors to describe the slope of the remaining potential, two types of interaction force diagrams are created; the first shows the direction of the force vectors in 3D and the second shows the magnitude of the force vectors. The latter representation leads to definition of an 'Interaction Force Fingerprint' (IFFP) which is characteristic of the ligand-receptor binding. IFFPs are used to discuss ligand binding in the human estrogen receptors ERalpha and ERbeta, and provide new insight into ligand selectivity between receptor isoforms.
描述了一种计算和可视化配体-受体复合物相互作用力的方法。从X射线晶体学结构出发,“解冻”过程产生了一个力场能量最小化的几何结构,该结构接近晶体学起始点。通过减去配体与每个氨基酸残基的非键相互作用,并使用所得的力向量来描述剩余势能的斜率,创建了两种类型的相互作用力图;第一种在三维空间中显示力向量的方向,第二种显示力向量的大小。后一种表示方式导致定义了一种“相互作用力指纹”(IFFP),它是配体-受体结合的特征。IFFP用于讨论人雌激素受体ERα和ERβ中的配体结合,并为受体亚型之间的配体选择性提供了新的见解。