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首页> 外文期刊>Nucleic Acids Research >Triplex hydration: nanosecond molecular dynamics simulation of the solvated triplex formed by mixed sequences
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Triplex hydration: nanosecond molecular dynamics simulation of the solvated triplex formed by mixed sequences

机译:三重水合:混合序列形成的三重溶剂化的纳秒分子动力学模拟

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A theoretical model for the hydration pattern and motion of ions around the triple helical DNA with mixed sequences d(GACTGGTGAC)d(GTCACCAGTC)~*d(GACTGGTGAC) in solution, during MD simulation, using the particle mesh Ewald sum method, is elaborated here. The AMBER 5.0 force field has been used during the simulation in solvent. The simulation studies support a dynamically stable atmosphere around the DNA triplex in solution over the entire length of the trajectory. The results have been compared with Hoogsteen triplexes and examined in the context of the observed behaviour of hydration in crystallographic data of duplexes. The dynamical organization of counterions and water molecules around the triplex formed by mixed sequences is described here. It has been observed that cations prefer to bind between two adjoining purines of the second and the third strands. The idea of localized complexes (mobile counterions in unspecific electronegative pockets around the DNA triplex with water molecules) may have important implications for understanding the specificity of the interactions of nucleic acids with proteins and other ligands.
机译:阐述了在粒子动力学模拟中,使用粒子网格Ewald sum方法,在溶液中混合序列为d(GACTGGTGAC)d(GTCACCAGTC)〜* d(GACTGGTGAC)的三重螺旋DNA周围水合模式和离子运动的理论模型。这里。在溶剂模拟过程中已使用AMBER 5.0力场。模拟研究支持整个轨迹上溶液中DNA三链体周围的动态稳定气氛。将结果与Hoogsteen三元组进行了比较,并在双链体的晶体学数据中观察到水合作用的情况下对其进行了检查。这里描述了由混合序列形成的三链体周围的抗衡离子和水分子的动态组织。已经观察到,阳离子倾向于结合在第二和第三链的两个相邻的嘌呤之间。局部复合物的想法(与水分子结合在DNA三链体周围非特异性电负性口袋中的移动抗衡离子)可能对理解核酸与蛋白质和其他配体相互作用的特异性具有重要意义。

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