Umrania Y, Nikjoo H, Goodfellow J M
Department of Crystallography, Birkbeck College, University of London, UK.
Int J Radiat Biol. 1995 Feb;67(2):145-52. doi: 10.1080/09553009514550181.
The aqueous hydration of DNA is an important aspect of its structure, which is of direct relevance to mechanisms of radiation damage. We have made a quantitative analysis of solvent interactions within hydrogen bonding distance of polar atoms of oligonucleotides using 12 B-DNA oligonucleotide crystal structures. The distribution of water molecules around the four bases, the sugar residues and the phosphate groups were generated and analysed both qualitatively and quantitatively. These data have then been used in a knowledge-based method to generate the likely hydration sites around a canonical B-DNA conformation in order to generate models of use in track studies of radiation damage.
DNA的水合作用是其结构的一个重要方面,这与辐射损伤机制直接相关。我们利用12个B-DNA寡核苷酸晶体结构,对寡核苷酸极性原子氢键距离内的溶剂相互作用进行了定量分析。对四种碱基、糖残基和磷酸基团周围水分子的分布进行了定性和定量的生成与分析。然后,这些数据被用于一种基于知识的方法,以生成典型B-DNA构象周围可能的水合位点,从而生成用于辐射损伤径迹研究的模型。