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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Consensus Conformations of Dinucleoside Monophosphates Described with Well-Converged Molecular Dynamics Simulations
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Consensus Conformations of Dinucleoside Monophosphates Described with Well-Converged Molecular Dynamics Simulations

机译:用良好融合的分子动力学模拟描述了二核苷二磷酸二核苷二磷酸的共识构型

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摘要

Dinudeoside monophosphates (DNMPs) have been described using various experimental approaches as flexible molecules which generate ensembles populating at least a small set of different conformations in solution. However, due to limitations of each approach in its ability to delineate the ensemble of conformations, an accurate and quantitative description of certain conformational features has not been performed for all DNMPs. Here, we apply a temperature replica-exchange molecular dynamics approach to fully and quickly converge conformational distributions of all RNA DNMPs immersed in the TIP3P water model using the AMBER ff14 force field. For a selection of DNMPs, the conformational ensembles were also generated when immersed in the OPC water model using alternative AMBER and CHARMM force fields. The OPC water model and other force field choices did not introduce new conformational classes but shifted the populations among existing conformations. Except for pyrimidine pyrimidine dinucleosides, all other DNMPs populated four major conformations (which are defined in the main text and labeled A-form, Ladder, Inverted, and Sheared), in addition to an Extended form. Pyrimidine-pyrimidines did not generate the Sheared conformation. Distinguishing features and stabilizing factors of each conformation were identified and assessed based on the known experimental interpretations. The configuration of the glycosidic bond and the nonbonding interactions of hydrogen bond acceptors with the 2'-hydroxyl group were found to play determining roles in stabilizing particular conformations which could serve as a guide for potential force field modifications to improve the accuracy. Additionally, we computed stacking free energies based on the DNMP conformational distributions and found significant discrepancies with a previous study. Our investigation determined that the AMBER force field was incorrectly implemented in the previous study. In the future, this simulation approach can be used to quickly analyze the effects of new force field modifications in shifting the conformational populations of DNMPs, and can can be further applied to foresee such effects in larger RNA motifs including tetranucleotides and tetraloops.
机译:已经使用各种实验方法作为柔性分子描述了二核苷酸单磷酸酯(DNMP),该柔性分子在溶液中产生至少一小组不同构象的组合。然而,由于每个方法的局限性在其描绘构象的集合的能力中,对所有DNMPS尚未执行某些构象特征的准确和定量描述。这里,我们使用琥珀色FF14力场来应用温度副本交换分子动力学方法来完全和快速地收敛浸没在尖端水模型中的所有RNA DNMP的构象分布。对于选择DNMPS,在使用替代琥珀色和魅力力场浸入OPC水模型中,也产生了构象集合。 OPC水模型和其他力场选择没有引入新的构象课程,而是在现有构象之间转移群体。除了嘧啶嘧啶二核苷外,还填充了四个主要构象(在主要文本中定义并标记为形式,梯形,倒置和剪切),除了扩展的形式。嘧啶 - 嘧啶未产生剪切构象。基于已知的实验解释来确定和评估每个构象的显着特征和稳定因子。发现糖苷键的构型和氢键受体与2'-羟基的非粘结相互作用在稳定的特定构象中起测量作用,该作用可以作为用于提高精度的潜在力场修改的指导。此外,我们基于DNMP构象分布计算堆叠自由能量,并发现与以前的研究有关的显着差异。我们的调查确定了琥珀力领域在前一项研究中实施了不正确。在未来,该模拟方法可用于快速分析新力场修改在移位DNMP的构象群体中的影响,并且可以进一步应用于预见的较大RNA基序中的效果,包括四核苷酸和四rORα。

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