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AMOEBA Polarizable Atomic Multipole Force Field for Nucleic Acids

机译:核酸的Amoeba可极化原子多极力磁场

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The AMOEBA polarizable atomic multipole force field for nucleic acids is presented. Valence and electrostatic parameters were determined from high-level quantum mechanical data, including structures, conformational energy, and electrostatic potentials, of nucleotide model compounds. Previously derived parameters for the phosphate group and nucleobases were incorporated. A total of over 35 mu s of condensed-phase molecular dynamics simulations of DNA and RNA molecules in aqueous solution and crystal lattice were performed to validate and refine the force field. The solution and/or crystal structures of DNA B-form duplexes, RNA duplexes, and hairpins were captured with an average root-mean-squared deviation from NMR structures below or around 2.0 angstrom. Structural details, such as base pairing and stacking, sugar puckering, backbone and chi-torsion angles, groove geometries, and crystal packing interfaces, agreed well with NMR and/or X-ray. The interconversion between A- and B-form DNAs was observed in ethanol water mixtures at 328 K. Crystal lattices of B- and Z-form DNA and A-form RNA were examined with simulations. For the RNA tetraloop, single strand tetramers, and HIV TAR with 29 residues, the simulated conformational states, (3)J-coupling, nuclear Overhauser effect, and residual dipolar coupling data were compared with NMR results. Starting from a totally unstacked/unfolding state, the rCAAU tetranucleotide was folded into A-form-like structures during similar to 1 mu s molecular dynamics simulations.
机译:提出了核酸的变形虫极化原子多极力场。价态和静电参数由高级量子力学数据确定,包括核苷酸模型化合物的结构、构象能和静电势。之前推导的磷酸基团和碱基的参数被合并。对水溶液和晶格中的DNA和RNA分子进行了总计超过35μs的凝聚相分子动力学模拟,以验证和细化力场。DNA B型双链体、RNA双链体和发夹的溶液和/或晶体结构与NMR结构的平均均方根偏差小于或约为2.0埃。结构细节,如碱基配对和堆积、糖折叠、主链和chi扭转角、凹槽几何形状和晶体堆积界面,与核磁共振和/或X射线非常一致。在328K的乙醇-水混合物中观察到A型和B型DNA之间的相互转换。通过模拟研究了B型和Z型DNA以及A型RNA的晶格。对于含有29个残基的RNA四环、单链四聚体和HIV-TAR,模拟的构象状态、(3)J-偶联、核过度效应和残余偶极偶联数据与NMR结果进行了比较。在类似于1μs分子动力学模拟的过程中,rCAAU四核苷酸从完全未堆叠/未折叠状态开始折叠成a型结构。

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