Sakurai M, Tazawa I, Inoue Y
J Mol Biol. 1983 Feb 5;163(4):683-6. doi: 10.1016/0022-2836(83)90119-5.
Stacking equilibrium quotients were evaluated for three purine deoxyribo-dimers, d-ApA, d-m6Apm6A and d-GpG, using procedures developed in earlier studies, and compared with those for the corresponding ribo-dimers. It was shown that the deoxyribo-dimers were apparently more strongly stacked than the corresponding ribo-dimers at 25 degrees C. To explain the observed difference in stability (as measured by the apparent stacking quotient) in the two series of dimers a new extended two-state model is advanced, that the differences in the apparent stacking quotients are due to a limited availability of the number of the sugar-ring puckering modes in the stacked ribo-dimers as compared with the case in the stacked deoxyribo-counterparts. The intrinsic stacking quotients, which are interrelated with the apparent stacking quotients by the microscopic sugar puckering equilibrium constants, were also evaluated for the purine deoxy- and ribo-dimers, and were found to be the same in any pair of these dimers.
使用早期研究中开发的方法,对三种嘌呤脱氧核糖二聚体d-ApA、d-m6Apm6A和d-GpG的堆积平衡商进行了评估,并与相应的核糖二聚体的堆积平衡商进行了比较。结果表明,在25℃时,脱氧核糖二聚体的堆积明显比相应的核糖二聚体更强。为了解释在这两个系列的二聚体中观察到的稳定性差异(通过表观堆积商来衡量),提出了一种新的扩展二态模型,即表观堆积商的差异是由于与堆积的脱氧核糖对应物相比,堆积的核糖二聚体中糖环褶皱模式数量的可用性有限。还对嘌呤脱氧和核糖二聚体评估了通过微观糖环褶皱平衡常数与表观堆积商相关的内在堆积商,并且发现这些二聚体中的任何一对的内在堆积商都是相同的。