Kirillova Svetlana, Carugo Oliviero
Department of Structural and Computational Biology, Max F, Perutz Laboratories, Vienna University, Campus Vienna Biocenter 5, A-1030 Vienna, Austria.
BMC Struct Biol. 2011 Oct 19;11:41. doi: 10.1186/1472-6807-11-41.
Hydration is crucial for RNA structure and function. X-ray crystallography is the most commonly used method to determine RNA structures and hydration and, therefore, statistical surveys are based on crystallographic results, the number of which is quickly increasing.
A statistical analysis of the water molecule distribution in high-resolution X-ray structures of unpaired RNA nucleotides showed that: different bases have the same penchant to be surrounded by water molecules; clusters of water molecules indicate possible hydration sites, which, in some cases, match those of the major and minor grooves of RNA and DNA double helices; complex hydrogen bond networks characterize the solvation of the nucleotides, resulting in a significant rigidity of the base and its surrounding water molecules. Interestingly, the hydration sites around unpaired RNA bases do not match, in general, the positions that are occupied by the second nucleotide when the base-pair is formed.
The hydration sites around unpaired RNA bases were found. They do not replicate the atom positions of complementary bases in the Watson-Crick pairs.
水合作用对于RNA的结构和功能至关重要。X射线晶体学是确定RNA结构和水合作用最常用的方法,因此,统计调查是基于晶体学结果进行的,其数量正在迅速增加。
对未配对RNA核苷酸的高分辨率X射线结构中的水分子分布进行统计分析表明:不同碱基被水分子包围的倾向相同;水分子簇表明可能的水合位点,在某些情况下,这些位点与RNA和DNA双螺旋的大沟和小沟的位点相匹配;复杂的氢键网络是核苷酸溶剂化的特征,导致碱基及其周围水分子具有显著的刚性。有趣的是,未配对RNA碱基周围的水合位点通常与形成碱基对时第二个核苷酸所占据的位置不匹配。
发现了未配对RNA碱基周围的水合位点。它们不会复制沃森-克里克碱基对中互补碱基的原子位置。