CNR-Institute of Chemistry of Organometallic Compounds-UOS Pisa, Pisa, Italy.
Phys Chem Chem Phys. 2013 Sep 28;15(36):15062-77. doi: 10.1039/c3cp51931g.
In order to describe possible reaction mechanisms involving amino acids, and the evolution of the protonation state of amino acid side chains in solution, a reactive force field (ReaxFF-based description) for peptide and protein simulations has been developed as an expansion of the previously reported glycine parameters. This expansion consists of adding to the training set more than five hundred molecular systems, including all the amino acids and some short peptide structures, which have been investigated by means of quantum mechanical calculations. The performance of this ReaxFF protein force field on a relatively short time scale (500 ps) is validated by comparison with classical non-reactive simulations and experimental data of well characterized test cases, comprising capped amino acids, peptides, and small proteins, and reaction mechanisms connected to the pharmaceutical sector. A good agreement of ReaxFF predicted conformations and kinetics with reference data is obtained.
为了描述可能涉及氨基酸的反应机制,以及溶液中氨基酸侧链质子化状态的演变,我们开发了一种用于肽和蛋白质模拟的反应力场(基于 ReaxFF 的描述),作为先前报道的甘氨酸参数的扩展。此扩展包括在训练集中添加五百多个分子系统,包括所有氨基酸和一些短肽结构,这些系统已通过量子力学计算进行了研究。通过与经典非反应性模拟和具有良好特征的测试案例(包括封端氨基酸、肽和小蛋白质)的实验数据进行比较,验证了该 ReaxFF 蛋白质力场在相对较短的时间尺度(500 ps)上的性能,这些案例涉及与制药领域相关的反应机制。我们获得了 ReaxFF 预测构象和动力学与参考数据的良好一致性。