首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >PERFORMANCE OF EMPIRICAL POTENTIALS (AMBER, CFF95, CVFF, CHARMM, OPLS, POLTEV), SEMIEMPIRICAL QUANTUM CHEMICAL METHODS (AM1, MNDO/M, PM3), AND AB INITIO HARTREE-FOCK METHOD FOR INTERACTION OF DNA BASES - COMPARISON WITH NONEMPIRICAL BEYOND HARTREE-FO
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PERFORMANCE OF EMPIRICAL POTENTIALS (AMBER, CFF95, CVFF, CHARMM, OPLS, POLTEV), SEMIEMPIRICAL QUANTUM CHEMICAL METHODS (AM1, MNDO/M, PM3), AND AB INITIO HARTREE-FOCK METHOD FOR INTERACTION OF DNA BASES - COMPARISON WITH NONEMPIRICAL BEYOND HARTREE-FO

机译:经验电势(琥珀色,CFF95,CVFF,CHARMM,OPLS,POLTEV),半定量化学方法(AM1,MNDO / M,PM3)和从头开始的HARTREE-FOCK方法与DNA碱基的相互作用-与非非BEBE -FO

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Empirical energy functions (AMBER 4.1, CFF95, CHARMM23, OPLS, Poltev), semiempirical quantum chemical methods (AM1, MNDO/M, PM3), and the nonempirical ab initio self-consistent field (SCF) method utilizing a minimal basis set combined with the London dispersion energy (SCFD method) were used for calculation of stabilization energies of 26 H-bonded DNA base pairs, 10 stacked DNA base pairs (thymine was replaced by uracil), and the B-DNA decamer (only DNA bases were considered). These energies were compared with nonempirical ab initio beyond Hartree-Fock values [second-order Moller-Plesset (MP2)/6-31G*(0.25)]. The best performance was exhibited by AMBER 4.1 with the force field of Cornell et al. The SCFD method, tested for H-bonded pairs only, exhibited stabilization energies that were too large. Semiempirical quantum chemical methods gave poor agreement with MP2 values in the H-bonded systems and failed completely for stacked pairs. A similar failure was recently reported for density functional theory calculations on base stacking. It may be concluded that currently available force fields provide much better descriptions of interactions of nucleic acid bases than the semiempirical methods and low-level ab initio treatment. (C) 1997 by John Wiley & Sons, Inc. [References: 49]
机译:经验能量函数(AMBER 4.1,CFF95,CHARMM23,OPLS,Poltev),半经验量子化学方法(AM1,MNDO / M,PM3)和非经验性从头算起自洽场(SCF)方法(利用最小基集与伦敦分散能(SCFD方法)用于计算26个H键合的DNA碱基对,10个堆叠的DNA碱基对(胸腺嘧啶被尿嘧啶代替)和B-DNA十聚体(仅考虑DNA碱基)的稳定能。 。将这些能量与Hartree-Fock值以外的非经验性从头算相比较[二阶Moller-Plesset(MP2)/ 6-31G *(0.25)]。 AMBER 4.1在Cornell等人的力场中表现出最好的性能。仅针对氢键对进行测试的SCFD方法显示的稳定能太大。半经验量子化学方法在氢键系统中与MP2值的一致性较差,并且对于堆叠对完全失败。最近报道了在基础堆积的密度泛函理论计算中出现类似的故障。可以得出结论,与半经验方法和低水平的从头开始处理相比,当前可用的力场提供了对核酸碱基相互作用的更好的描述。 (C)1997,John Wiley&Sons,Inc. [参考:49]

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