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Intrinsic conformational energetics associated with the glycosyl torsion in DNA: a quantum mechanical study.

机译:与DNA中糖基扭转相关的内在构象能量学:量子力学研究。

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摘要

The glycosyl torsion (chi) in nucleic acids has long been recognized to be a major determinant of their conformational properties. chi torsional energetics were systematically mapped in deoxyribonucleosides using high-level quantum mechanical methods, for north and south sugar puckers and with gamma in the g(+) and trans conformations. In all cases, the syn conformation is found higher in energy than the anti. When gamma is changed from g(+) to trans, the anti orientation of the base is strongly destabilized, and the energy difference and barrier between anti and syn are significantly decreased. The barrier between anti and syn in deoxyribonucleosides is found to be less than 10 kcal/mol and tends to be lower with purines than with pyrimidines. With gamma = g(+)/chi = anti, a south sugar yields a significantly broader energy well than a north sugar with no energy barrier between chi values typical of A or B DNA. Contrary to the prevailing view, the syn orientation is not more stable with south puckers than with north puckers. The syn conformation is significantly more energetically accessible with guanine than with adenine in 5-nucleotides but not in nucleosides. Analysis of nucleic acid crystal structures shows that gamma = trans/chi = anti is a minor but not negligible conformation. Overall, chi appears to be a very malleable structural parameter with the experimental chi distributions reflecting, to a large extent, the associated intrinsic torsional energetics.
机译:长期以来,人们一直认为核酸中的糖基扭转(chi)是其构象性质的主要决定因素。使用高级量子力学方法,针对北部和南部的糖皱褶以及g(+)和反式构象中的γ,将扭转能量能系统地映射到了脱氧核糖核苷中。在所有情况下,发现顺式构象的能量均高于反式构象。当伽马从g(+)变为反式时,碱基的反方向非常不稳定,反之和syn的能差和势垒都大大减小。发现在脱氧核糖核苷中,抗和顺式之间的势垒小于10 kcal / mol,嘌呤比趋于嘧啶的势垒更低。当gamma = g(+)/ chi = anti时,南糖产生的能量要比北糖好得多,在A或B DNA的典型chi值之间没有能量障碍。与普遍观点相反,南皱纹的同步取向并不比北皱纹的稳定。在5个核苷酸中,鸟嘌呤比在腺嘌呤上更容易获得syn构象,而在核苷中则没有。核酸晶体结构的分析表明,γ=反式/ chi =反式是次要的但不是可以忽略的构象。总体而言,“气”似乎是一个非常具有延展性的结构参数,实验“气”的分布在很大程度上反映了相关的固有扭转能。

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