Structural Biochemistry, Bijvoet Centre for Biomolecular Research, Utrecht University, Padualaan 8, 3584 CH Utrecht, The Netherlands.
Scientific Computing Department, Science and Technology Facilities Council, Research Complex at Harwell, Didcot OX11 0FA, United Kingdom.
Acta Crystallogr D Struct Biol. 2021 Nov 1;77(Pt 11):1357-1364. doi: 10.1107/S2059798321010044. Epub 2021 Oct 20.
Ensemble refinement, the application of molecular dynamics to crystallographic refinement, explicitly models the disorder inherent in macromolecular structures. These ensemble models have been shown to produce more accurate structures than traditional single-model structures. However, suboptimal sampling of the molecular-dynamics simulation and modelling of crystallographic disorder has limited the utility of the method, and can lead to unphysical and strained models. Here, two improvements to the ensemble refinement method implemented within Phenix are presented: DEN restraints, which guide the local sampling of conformations and allow a more robust exploration of local conformational landscapes, and ECHT disorder models, which allow the selection of more physically meaningful and effective disorder models for parameterizing the continuous disorder components within a crystal. These improvements lead to more consistent and physically interpretable simulations of macromolecules in crystals, and allow structural heterogeneity and disorder to be systematically explored on different scales. The new approach is demonstrated on several case studies and the SARS-CoV-2 main protease, and demonstrates how the choice of disorder model affects the type of disorder that is sampled by the restrained molecular-dynamics simulation.
整体精修,即将分子动力学应用于晶体精修,明确地对大分子结构中固有的无序性进行建模。这些整体模型已被证明可以产生比传统单一模型结构更准确的结构。然而,分子动力学模拟的非最优采样和晶体无序性的建模限制了该方法的实用性,并可能导致不真实和紧张的模型。在此,提出了在 Phenix 中实现的整体精修方法的两项改进:DEN 约束,指导构象的局部采样,并允许更稳健地探索局部构象景观;以及 ECHT 无序模型,允许为晶体中连续无序成分参数化选择更具有物理意义和更有效的无序模型。这些改进导致了晶体中大分子更一致和具有物理可解释性的模拟,并允许在不同尺度上系统地探索结构异质性和无序性。该新方法在几个案例研究和 SARS-CoV-2 主蛋白酶上得到了验证,并展示了无序模型的选择如何影响受约束分子动力学模拟采样的无序类型。