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Assessment of AMBER Force Fields for Simulations of ssDNA

机译:评估SSDNA模拟的琥珀色力场

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摘要

Single-stranded DNA (ssDNA) plays an important role in biological processes and is used in DNA nanotechnology and other novel applications. Many important research questions can be addressed with molecular simulations of ssDNA molecules; however, no dedicated force field for ssDNA has been developed, and there is limited experimental information about ssDNA structures. This study assesses the accuracy and applicability of existing Amber force fields for all-atom simulations of ssDNA, such as ff99, bsc0, bsc1, and OL15, in implicit and explicit solvents via comparison to available experimental data, such as Forster resonance energy transfer and small angle X-ray scattering. We observed that some force fields agree better with experiments than others mainly due to the difference in parameterization of the propensity for hydrogen bonding and base stacking. Overall, the Amber ff99 force field in the IGB5 or IGB8 implicit solvent and the bsc1 force field in the explicit TIP3P solvent had the best agreement with experiment.
机译:单链DNA(ssDNA)在生物过程中起着重要作用,并被用于DNA纳米技术和其他新应用。许多重要的研究问题可以通过单链DNA分子的分子模拟来解决;然而,目前还没有为单链DNA开发专门的力场,关于单链DNA结构的实验信息也很有限。本研究通过与现有实验数据(如福斯特共振能量转移和小角X射线散射)的比较,评估了隐式和显式溶剂中现有琥珀色力场对单链DNA全原子模拟(如ff99、bsc0、bsc1和OL15)的准确性和适用性。我们观察到,一些力场比其他力场更符合实验,这主要是由于氢键倾向和碱基堆积的参数化不同。总体而言,IGB5或IGB8隐式溶剂中的琥珀色ff99力场和TIP3P显式溶剂中的bsc1力场与实验结果最为一致。

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