School of Biological Sciences, Nanyang Technological University , 60 Nanyang Drive, 637551 Singapore.
J Phys Chem B. 2017 Mar 16;121(10):2252-2264. doi: 10.1021/acs.jpcb.7b00051. Epub 2017 Mar 6.
An ensemble-modeling scheme incorporating coarse-grained simulations with experimental small-angle X-ray scattering (SAXS) data is applied to dengue virus 2 (DENV2) nonstructural protein 5 (NS5). NS5 serves a key role in viral replication through its two domains that are connected by a 10-residue polypeptide segment. A set of representative structures is generated from a simulated structure pool using SAXS data fitting by the non-negativity least squares (NNLS) or standard ensemble optimization method (EOM) based on a genetic algorithm (GA). It is found that a proper low-energy threshold of the structure pool is necessary to produce a conformational ensemble of two representative structures by both NNLS and GA that agrees well with the experimental SAXS profile. The stability of the constructed ensemble is validated also by molecular dynamics simulations with an all-atom force field. The constructed ensemble successfully revealed the domain-domain orientation and domain-contacting interface of DENV2 NS5. Using experimental data fitting and additional investigations with synthesized data, it is found that energy restraint on the conformational pool is necessary to avoid overinterpretation of experimental data by spurious conformational representations.
一种集成了粗粒化模拟和实验小角 X 射线散射(SAXS)数据的集成模型方案被应用于登革热病毒 2(DENV2)非结构蛋白 5(NS5)。NS5 通过其两个由 10 个残基多肽段连接的结构域在病毒复制中起着关键作用。使用 SAXS 数据拟合,通过非负最小二乘(NNLS)或基于遗传算法(GA)的标准集合优化方法(EOM),从模拟结构池中生成一组代表性结构。结果发现,对于 NNLS 和 GA 来说,适当的结构池低能量阈值对于产生两个代表性结构的构象集合是必要的,该集合与实验 SAXS 轮廓很好地吻合。通过全原子力场的分子动力学模拟还验证了构建集合的稳定性。构建的集合成功地揭示了 DENV2 NS5 的结构域-结构域取向和结构域接触界面。使用实验数据拟合和对合成数据的进一步研究发现,对于构象池的能量限制是必要的,以避免通过虚假构象表示对实验数据进行过度解释。