首页> 外文期刊>Journal of chemical theory and computation: JCTC >Automated Parametrization of the Coarse-Grained Martini Force Field for Small Organic Molecules
【24h】

Automated Parametrization of the Coarse-Grained Martini Force Field for Small Organic Molecules

机译:小型有机分子粗粒马提尼力场的自动参数化

获取原文
获取原文并翻译 | 示例
           

摘要

The systematic exploration of chemical compound space holds many promises toward structure-function relationships and material design. In the context of computer simulations, progress is hampered by both the sheer number of compounds and the efforts associated with parametrizing a force field for every new molecule. A coarse-grained (CG) representation provides not only a reduced phase space but also a smaller number of compounds, due to the redundancy of CG representations mapping to the same structure. Though many CG models require the explicit force-field parametrization of a molecule with all others, others assume transferability by means of mixing rules, such as the Martini force field. To alleviate the burden associated with tedious parametrizations for each new compound, the present work aims at automating the mapping and parametrization of common small organic molecules for Martini. We test the method by analyzing the water/octanol partitioning of more than 650 neutral molecules, the hydration free energy of 354 others, and the free energies of hydration and solvation in octanol of another 69 compounds. Last, we compare with all-atom simulations the thermodynamics of insertion of four individual solute molecules in a phospholipid membrane. The protocol demonstrates the feasibility of an automated parametrization scheme for Martini and provides prospects for high-throughput simulation methodologies.
机译:对化合物空间的系统探索对结构-功能关系和材料设计具有许多希望。在计算机模拟的背景下,化合物的数量庞大以及与为每个新分子参数化力场相关的努力都阻碍了进展。由于CG表示映射到相同的结构,因此粗粒度(CG)表示不仅提供了减少的相空间,而且提供了更少的化合物。尽管许多CG模型要求将分子与所有其他分子进行显式的力场参数化,但其他模型通过混合规则(例如马提尼力场)来假定可传递性。为了减轻与每种新化合物繁琐的参数化相关的负担,本工作旨在使马提尼酒常见的有机小分子的映射和参数化自动化。我们通过分析650多个中性分子在水/辛醇中的分配,354个其他中性分子的水合自由能以及另外69种化合物在辛醇中的水合和溶剂化自由能来测试该方法。最后,我们将全原子模拟与磷脂膜中四个单个溶质分子插入的热力学进行比较。该协议证明了针对马提尼酒的自动参数化方案的可行性,并为高通量仿真方法学提供了前景。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号