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Base-base and deoxyribose-base stacking interactions in B-DNA and Z-DNA: a quantum-chemical study.

机译:B-DNA和Z-DNA中碱基-碱基和脱氧核糖-碱基的堆叠相互作用:一项量子化学研究。

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摘要

Base-stacking interactions in canonical and crystal B-DNA and in Z-DNA steps are studied using the ab initio quantum-chemical method with inclusion of electron correlation. The stacking energies in canonical B-DNA base-pair steps vary from -9.5 kcal/mol (GG) to -13.2 kcal/mol (GC). The many-body nonadditivity term, although rather small in absolute value, influences the sequence dependence of stacking energy. The base-stacking energies calculated for CGC and a hypothetical TAT sequence in Z-configuration are similar to those in B-DNA. Comparison with older quantum-chemical studies shows that they do not provide even a qualitatively correct description of base stacking. We also evaluate the base-(deoxy)ribose stacking geometry that occurs in Z-DNA and in nucleotides linked by 2',5'-phosphodiester bonds. Although the molecular orbital analysis does not rule out the charge-transfer n-pi* interaction of the sugar 04' with the aromatic base, the base-sugar contact is stabilized by dispersion energy similar to that of stacked bases. The stabilization amounts to almost 4 kcal/mol and is thus comparable to that afforded by normal base-base stacking. This enhancement of the total stacking interaction could contribute to the propensity of short d(CG)n sequences to adopt the Z-conformation.
机译:使用从头算量子化学方法(包括电子相关性)研究了规范B-DNA和晶体B-DNA以及Z-DNA步骤中的碱基堆积相互作用。规范B-DNA碱基对步骤中的堆积能量从-9.5 kcal / mol(GG)到-13.2 kcal / mol(GC)不等。多体非可加性项尽管绝对值很小,但会影响堆积能量的顺序依赖性。为CGC计算的碱基堆积能量和Z-构型的假设TAT序列与B-DNA相似。与较早的量子化学研究的比较表明,它们甚至没有提供定性的碱基堆积正确描述。我们还评估了Z-DNA和2',5'-磷酸二酯键连接的核苷酸中发生的碱基-(脱氧)核糖堆积几何形状。尽管分子轨道分析并未排除糖04'与芳族碱基的电荷转移n-pi *相互作用,但与堆叠碱基相似的分散能使碱基与糖之间的接触得以稳定。稳定度几乎达到4 kcal / mol,因此与正常的碱基-碱基堆积所提供的稳定度相当。总堆叠相互作用的这种增强可能有助于短d(CG)n序列采用Z构象的倾向。

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