Xie Wangshen, Orozco Modesto, Truhlar Donald G, Gao Jiali
Department of Chemistry and Supercomputing Institute, University of Minnesota, Minneapolis Minnesota 55455-0431.
J Chem Theory Comput. 2009 Feb 17;5(3):459-467. doi: 10.1021/ct800239q.
A recently proposed electronic structure-based force field called the explicit polarization (X-Pol) potential is used to study many-body electronic polarization effects in a protein, in particular by carrying out a molecular dynamics (MD) simulation of bovine pancreatic trypsin inhibitor (BPTI) in water with periodic boundary conditions. The primary unit cell is cubic with dimensions ~54 × 54 × 54 Å(3), and the total number of atoms in this cell is 14281. An approximate electronic wave function, consisting of 29026 basis functions for the entire system, is variationally optimized to give the minimum Born-Oppenheimer energy at every MD step; this allows the efficient evaluation of the required analytic forces for the dynamics. Intramolecular and intermolecular polarization and intramolecular charge transfer effects are examined and are found to be significant; for example, 17 out of 58 backbone carbonyls differ from neutrality on average by more than 0.1 electron, and the average charge on the six alanines varies from -0.05 to +0.09. The instantaneous excess charges vary even more widely; the backbone carbonyls have standard deviations in their fluctuating net charges from 0.03 to 0.05, and more than half of the residues have excess charges whose standard deviation exceeds 0.05. We conclude that the new-generation X-Pol force field permits the inclusion of time-dependent quantum mechanical polarization and charge transfer effects in much larger systems than was previously possible.
一种最近提出的基于电子结构的力场,称为显式极化(X-Pol)势,用于研究蛋白质中的多体电子极化效应,特别是通过在具有周期性边界条件的水中对牛胰蛋白酶抑制剂(BPTI)进行分子动力学(MD)模拟。主晶胞为立方体,尺寸约为54×54×54 ų,该晶胞中的原子总数为14281。一个由整个系统的29026个基函数组成的近似电子波函数在每个MD步骤进行变分优化,以给出最小的玻恩-奥本海默能量;这使得能够有效地评估动力学所需的解析力。研究了分子内和分子间的极化以及分子内的电荷转移效应,发现这些效应很显著;例如,58个主链羰基中有17个平均偏离中性超过0.1个电子,六个丙氨酸上的平均电荷从-0.05到+0.09不等。瞬时过量电荷的变化甚至更大;主链羰基的波动净电荷的标准偏差为0.03到0.05,超过一半的残基的过量电荷的标准偏差超过0.05。我们得出结论,新一代X-Pol力场允许在比以前更大的系统中纳入随时间变化的量子力学极化和电荷转移效应。