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带有水和离子的显式溶剂化的 DNA 的粗粒度模型。

A coarse-grained model of DNA with explicit solvation by water and ions.

机构信息

Department of Chemistry, University of Utah, 315 South 1400 East, Salt Lake City, Utah 84112-0850, USA.

出版信息

J Phys Chem B. 2011 Jan 13;115(1):132-42. doi: 10.1021/jp107028n. Epub 2010 Dec 14.

Abstract

Solvation by water and ions has been shown to be vitally important for biological molecules, yet fully atomistic simulations of large biomolecules remain a challenge due to their high computational cost. The effect of solvation is the most pronounced in polyelectrolytes, of which DNA is a paradigmatic example. Coarse-grained (CG) representations have been developed to model the essential physics of the DNA molecule, yet almost without exception, these models replace the water and ions by implicit solvation in order to significantly reduce the computational expense. This work introduces the first coarse-grained model of DNA solvated explicitly with water and ions. To this end, we combined two established CG models; the recently developed mW-ion model [DeMille, R. C.; Molinero, V. J. Chem. Phys. 2009, 131, 034107], which reproduces the structure of aqueous ionic solutions without electrostatic interactions, was coupled to the three-sites-per-nucleotide (3SPN) CG model of DNA [Knotts, T. A., IV; et al. J. Chem. Phys. 2007, 126, 084901]. Using atomistic simulations of d(CGCGAATTCGCG)(2) as a reference, we optimized the coarse-grained interactions between DNA and solvent to reproduce the solvation structure of water and ions around CG DNA. The resulting coarse-grained model of DNA explicitly solvated by ions and water (mW/3SPN-DNA) exhibits base-pair specificity and ion-condensation effects and it is 2 orders of magnitude computationally more efficient than atomistic models. We describe the parametrization strategy and offer insight into how other CG models may be combined with a coarse-grained solvent model such as mW-ion.

摘要

水和离子的溶剂化对于生物分子至关重要,但由于其计算成本高,大型生物分子的全原子模拟仍然是一个挑战。溶剂化的影响在聚电解质中最为明显,其中 DNA 是一个典型的例子。为了模拟 DNA 分子的基本物理性质,已经开发了粗粒化(CG)表示法,但几乎无一例外地,这些模型通过隐式溶剂化来代替水和离子,以显著降低计算成本。这项工作引入了第一个用 explicit 水和 ions 溶剂化的 DNA 的粗粒化模型。为此,我们结合了两个已建立的 CG 模型;最近开发的 mW-ion 模型 [DeMille, R. C.; Molinero, V. J. Chem. Phys. 2009, 131, 034107],它可以再现不含静电相互作用的水溶液中离子的结构,与三核苷酸位点(3SPN)CG 模型结合使用 [Knotts, T. A., IV; et al. J. Chem. Phys. 2007, 126, 084901]。使用 d(CGCGAATTCGCG)(2) 的原子模拟作为参考,我们优化了 DNA 和溶剂之间的粗粒化相互作用,以再现 CG DNA 周围水和离子的溶剂化结构。由此产生的离子和水 explicit 溶剂化的 CG DNA 模型(mW/3SPN-DNA)表现出碱基对特异性和离子凝聚效应,并且比原子模型计算效率高 2 个数量级。我们描述了参数化策略,并提供了有关其他 CG 模型如何与粗粒化溶剂模型(如 mW-ion)结合的见解。

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