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基于磁场旋转采样的剩余偶极耦合的分子结构精修

Molecular structure refinement based on residual dipolar couplings using magnetic-field rotational sampling.

作者信息

Pechlaner Maria, van Gunsteren Wilfred F, Smith Lorna J, Hansen Niels

机构信息

Institute for Molecular Physical Science, Swiss Federal Institute of Technology, ETH, CH-8093 Zurich, Switzerland.

Department of Chemistry, Inorganic Chemistry Laboratory, University of Oxford, South Parks Road, Oxford OX1 3QR, United Kingdom.

出版信息

J Chem Phys. 2024 Jul 28;161(4). doi: 10.1063/5.0203153.

Abstract

A method for structure refinement of molecules based on residual dipolar coupling (RDC) data is proposed. It calculates RDC values using magnetic-field rotational sampling of the rotational degrees of freedom of a molecule in conjunction with molecule-internal configurational sampling. By applying rotational sampling, as is occurring in the experiment, leading to observable RDCs, the method stays close to the experiment. It avoids the use of an alignment tensor and, therefore, the assumptions that the overall rotation of the molecule is decoupled from its internal motions and that the molecule is rigid. Two simple molecules, a relatively rigid and a very flexible cyclo-octane molecule with eight aliphatic side chains containing 24 united atoms, serve as so-called "toy model" test systems. The method demonstrates the influence of molecular flexibility, force-field dominance, and the number of RDC restraints available on the outcome of structure refinement based on RDCs. Magnetic-field rotational sampling is basically equivalent but more efficient than explicitly sampling the rotational degrees of freedom of the molecule. In addition, the performance of the method is less dependent on the number NRDC of measured RDC-values available. The restraining forces bias the overall orientation distribution of the molecule correctly. This study suggests that the information content of RDCs with respect to molecular structure is limited.

摘要

提出了一种基于剩余偶极耦合(RDC)数据的分子结构优化方法。该方法结合分子内部构型采样,通过对分子旋转自由度进行磁场旋转采样来计算RDC值。通过应用旋转采样,如同实验中发生的那样,产生可观测的RDC,该方法与实验紧密相关。它避免了使用取向张量,因此也避免了分子的整体旋转与其内部运动解耦以及分子是刚性的假设。两个简单分子,一个相对刚性的和一个非常灵活的含有24个联合原子的带有八个脂肪族侧链的环辛烷分子,用作所谓的“玩具模型”测试系统。该方法展示了分子柔性、力场优势以及可用RDC约束数量对基于RDC的结构优化结果的影响。磁场旋转采样基本上等效,但比明确采样分子的旋转自由度更有效。此外,该方法的性能对可用测量RDC值的数量NRDC的依赖性较小。约束力正确地使分子的整体取向分布产生偏差。这项研究表明RDC关于分子结构的信息含量是有限的。

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