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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Relationships between P-31 chemical shift tensors and conformation of nucleic acid backbone: A DFT study
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Relationships between P-31 chemical shift tensors and conformation of nucleic acid backbone: A DFT study

机译:P-31化学位移张量与核酸骨架构象之间的关系:DFT研究

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Density functional theory (DFT) has been applied to study the conformational dependence of P-31 chemical shift tensors in B-DNA. The gg and gt conformations of backbone phosphate groups representing B-I- and B-II-DNA have been examined. Calculations have been carried out on static models of dimethyl phosphate (dmp) and dinucleoside-3',5'-monophosphate with bases replaced by hydrogen atoms in vacuo as well as in an explicit solvent. Trends in P-31 chemical shift anisotropy (CSA) tensors with respect to the backbone torsion angles alpha, zeta, beta, and epsilon are presented. Although these trends do not change qualitatively upon solvation, quantitative changes result in the reduction of the chemical shift anisotropy. For alpha and zeta in the range from 270 degrees to 330 degrees and from 240 degrees to 300 degrees, respectively, the delta(22) and delta(33) principal components vary within as much as 30 ppm, showing a marked dependence on backbone conformation. The calculated P-31 chemical shift tensor principal axes deviate from the axes of O-P-O bond angles by at most 5 degrees. For solvent models, our results are in a good agreement with experimental estimates of relative gg and gt isotropic chemical shifts. Solvation also brings the theoretical delta(iso) of the gg conformation closer to the experimental gg data of barium diethyl phosphate.
机译:密度泛函理论(DFT)已被用于研究B-DNA中P-31化学位移张量的构象依赖性。已经检查了代表B-I-和B-II-DNA的主链磷酸基团的gg和gt构象。在磷酸二甲酯(dmp)和三核苷3',5'-单磷酸酯的静态模型中进行了计算,其中的碱基在真空中以及在显性溶剂中被氢原子取代。提出了P-31化学位移各向异性(CSA)张量相对于主链扭转角α,ζ,β和epsilon的趋势。尽管这些趋势在溶剂化后没有定性变化,但定量变化却导致化学位移各向异性的降低。对于分别在270度至330度和240度至300度范围内的alpha和zeta,delta(22)和delta(33)主成分的变化范围在30 ppm之内,显示出对骨架构象的显着依赖性。计算出的P-31化学位移张量主轴与O-P-O键角的轴线相差最多5度。对于溶剂模型,我们的结果与相对gg和gt各向同性化学位移的实验估计值非常吻合。溶剂化还使gg构象的理论δ(iso)更接近磷酸二乙酯钡的实验gg数据。

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