...
首页> 外文期刊>Chemical science >Configuration determination by residual dipolar couplings: accessing the full conformational space by molecular dynamics with tensorial constraints
【24h】

Configuration determination by residual dipolar couplings: accessing the full conformational space by molecular dynamics with tensorial constraints

机译:残差偶极耦合的配置确定:通过具有姿态约束的分子动力学访问完全构象空间

获取原文
           

摘要

Residual dipolar couplings (RDCs) and other residual anisotropic NMR parameters provide valuable structural information of high quality and quantity, bringing detailed structural models of flexible molecules in solution in reach. The corresponding data interpretation so far is directly or indirectly based on the concept of a molecular alignment tensor, which, however, is ill-defined for flexible molecules. The concept is typically applied to a single or a small set of lowest energy structures, ignoring the effect of vibrational averaging. Here, we introduce an entirely different approach based on time averaged molecular dynamics with dipolar couplings as tensorial orientational restraints that can be used to solve structural problems in molecules of any size without the need of introducing an explicit molecular alignment tensor into the computation. RDC restraints are represented by their full 3D interaction tensor in the laboratory frame, for which pseudo forces are calculated using a secular dipolar Hamiltonian as the target. The resulting rotational averaging of each individual tensorial restraint leads to structural ensembles that best fulfil the experimental data. Using one-bond RDCs, the approach has been implemented in the force field procedures of the program COSMOS and extensively tested. A concise theoretical introduction, including the special treatment of force fields for stable and fast MD simulations, as well as applications regarding configurational analyses of small to medium-sized organic molecules with different degrees of flexibility, is given. The observed results are discussed in detail.
机译:残留的偶极偶联(RDC)和其他残留各向异性NMR参数提供高质量和数量的有价值结构信息,使柔性分子的柔性分子在达到的溶液中具有详细的结构模型。到目前为止的相应数据解释是直接或间接地基于分子取向张量的概念,然而,对于柔性分子,该分子取向张量的概念是不定义的。该概念通常应用于单个或一小组最低能量结构,忽略振动平均的效果。这里,我们将基于时间平均分子动力学引入完全不同的方法,其具有双极联轴器,作为张于校正界限限制,可用于解决任何尺寸的分子中的结构问题而不需要将显式分子对准张量引入计算。 RDC约束由实验室框架中的完整3D相互作用张量表示,其中使用世俗的Dipolar Hamiltonian作为目标来计算伪力。所得到的每个单独的卷曲的旋转平均导致最能实现实验数据的结构集合。使用单键RDC,该方法已经在程序宇宙的力现场程序中实现,并广泛测试。一种简洁的理论介绍,包括用于稳定和快速MD模拟的力场的特殊处理,以及关于小于中小型有机分子的配置分析的应用,包括具有不同柔韧性的中小型有机分子。观察结果是详细讨论的。

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