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用于Amber力场的修订RNA二面角参数改善了RNA分子动力学。

Revised RNA Dihedral Parameters for the Amber Force Field Improve RNA Molecular Dynamics.

作者信息

Aytenfisu Asaminew H, Spasic Aleksandar, Grossfield Alan, Stern Harry A, Mathews David H

机构信息

Department of Biochemistry & Biophysics, University of Rochester Medical Center , Rochester, New York 14642, United States.

Center for RNA Biology, University of Rochester Medical Center , Rochester, New York 14642, United States.

出版信息

J Chem Theory Comput. 2017 Feb 14;13(2):900-915. doi: 10.1021/acs.jctc.6b00870. Epub 2017 Jan 24.

Abstract

The backbone dihedral parameters of the Amber RNA force field were improved by fitting using multiple linear regression to potential energies determined by quantum chemistry calculations. Five backbone and four glycosidic dihedral parameters were fit simultaneously to reproduce the potential energies determined by a high-level density functional theory calculation (B97D3 functional with the AUG-CC-PVTZ basis set). Umbrella sampling was used to determine conformational free energies along the dihedral angles, and these better agree with the population of conformations observed in the protein data bank for the new parameters than for the conventional parameters. Molecular dynamics simulations performed on a set of hairpin loops, duplexes and tetramers with the new parameter set show improved modeling for the structures of tetramers CCCC, CAAU, and GACC, and an RNA internal loop of noncanonical pairs, as compared to the conventional parameters. For the tetramers, the new parameters largely avoid the incorrect intercalated structures that dominate the conformational samples from the conventional parameters. For the internal loop, the major conformation solved by NMR is stable with the new parameters, but not with the conventional parameters. The new force field performs similarly to the conventional parameters for the UUCG and GCAA hairpin loops and the [U(UA)A] duplex.

摘要

通过使用多元线性回归对量子化学计算确定的势能进行拟合,改进了Amber RNA力场的主链二面角参数。同时拟合了五个主链和四个糖苷二面角参数,以重现由高级密度泛函理论计算(采用AUG-CC-PVTZ基组的B97D3泛函)确定的势能。使用伞形采样来确定沿二面角的构象自由能,与传统参数相比,新参数下这些自由能与蛋白质数据库中观察到的构象群体更吻合。对一组发夹环、双链体和四聚体进行的分子动力学模拟显示,与传统参数相比,新参数集对四聚体CCCC、CAAU和GACC以及非规范对的RNA内环结构的建模有所改进。对于四聚体,新参数很大程度上避免了传统参数主导构象样本的不正确插入结构。对于内环,通过核磁共振解析的主要构象在新参数下是稳定的,但在传统参数下不稳定。新力场对于UUCG和GCAA发夹环以及[U(UA)A]双链体的表现与传统参数类似。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/efbc/5312698/1d9360cb1197/ct-2016-00870w_0001.jpg

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