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首页> 外文期刊>ACS Omega >Coarse-Grained Simulation of Rodlike Higher-Order Quadruplex Structures at Different Salt Concentrations
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Coarse-Grained Simulation of Rodlike Higher-Order Quadruplex Structures at Different Salt Concentrations

机译:不同盐浓度的棒状高阶Quadruple型结构的粗粒模拟

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摘要

We present a coarse-grained (CG) model of a rodlike higher-order quadruplex with explicit monovalent salts, which was developed from radial distribution functions of an underlying reference atomistic molecular dynamics simulation using inverse Monte Carlo technique. This work improves our previous CG model and extends its applicability beyond the minimal salt conditions, allowing its use at variable ionic strengths. The strategies necessary for the model development are clearly explained and discussed. The effects of the number of stacked quadruplexes and varied salt concentration on the elasticity of the rodlike higher-order quadruplex structures are analyzed. The CG model reproduces the deformations of the terminal parts in agreement with experimental observations without introducing any special parameters for terminal beads and reveals slight differences in the rise and twist of the G-quartet arrangement along the studied biopolymer. The conclusions of our study can be generalized for other G-quartet-based structures.
机译:我们介绍了一种粗糙的(CG)棒状高阶Quadflex的模型,其具有明确的一价盐,这是由使用逆蒙特卡罗技术的底层参考原子分子动力学模拟的径向分布函数开发。这项工作改进了我们以前的CG模型,并将其适用性延伸到最小的盐条件之外,允许其在可变离子强度下使用。明确解释和讨论了模型开发所需的策略。分析了堆叠的四边形数量和各种盐浓度对棒状高阶四跨链结构的弹性的影响。 CG模型与实验观察结果再现了终端零件的变形,而不会引入终端珠的任何特殊参数,并透露沿着所研究的生物聚合物的G-Quartet布置的升高和扭曲的轻微差异。我们研究的结论可以推广其他基于G-Quartet的结构。

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