Department of Chemistry, University of Central Arkansas, Conway, Arkansas, United States of America.
PLoS One. 2013 Aug 6;8(8):e71420. doi: 10.1371/journal.pone.0071420. Print 2013.
The fine conformational subtleties of DNA structure modulate many fundamental cellular processes including gene activation/repression, cellular division, and DNA repair. Most of these cellular processes rely on the conformational heterogeneity of specific DNA sequences. Factors including those structural characteristics inherent in the particular base sequence as well as those induced through interaction with solvent components combine to produce fine DNA structural variation including helical flexibility and conformation. Cation-pi interactions between solvent cations or their first hydration shell waters and the faces of DNA bases form sequence selectively and contribute to DNA structural heterogeneity. In this paper, we detect and characterize the binding patterns found in cation-pi interactions between solvent cations and DNA bases in a set of high resolution x-ray crystal structures. Specifically, we found that monovalent cations (Tl⁺) and the polarized first hydration shell waters of divalent cations (Mg²⁺, Ca²⁺) form cation-pi interactions with DNA bases stabilizing unstacked conformations. When these cation-pi interactions are combined with electrostatic interactions a pattern of specific binding motifs is formed within the grooves.
DNA 结构的精细构象细微差别调节许多基本的细胞过程,包括基因激活/抑制、细胞分裂和 DNA 修复。这些细胞过程大多依赖于特定 DNA 序列的构象异质性。包括特定碱基序列固有的结构特征以及通过与溶剂成分相互作用诱导的因素相结合,产生了精细的 DNA 结构变化,包括螺旋灵活性和构象。溶剂阳离子或其第一水合壳水与 DNA 碱基面之间的阳离子-π 相互作用具有序列选择性,并有助于 DNA 结构的异质性。在本文中,我们在一组高分辨率 X 射线晶体结构中检测和表征了溶剂阳离子与 DNA 碱基之间阳离子-π 相互作用中发现的结合模式。具体来说,我们发现单价阳离子(Tl⁺)和二价阳离子(Mg²⁺、Ca²⁺)的极化第一水合壳水与 DNA 碱基形成阳离子-π 相互作用,稳定非堆叠构象。当这些阳离子-π 相互作用与静电相互作用结合时,在沟道内形成特定结合基序的模式。