Sühnel J
Biocomputing Group, Institut für Molekulare Biotechnologie, Postfach 100813, D-07708 Jena, Germany.
Biopolymers. 2001;61(1):32-51. doi: 10.1002/1097-0282(2001)61:1<32::AID-BIP10063>3.0.CO;2-B.
Hydrogen-bonded base pairs are an important determinant of nucleic acid structure and function. However, other interactions such as base-base stacking, base-backbone, and backbone-backbone interactions as well as effects exerted by the solvent and by metal or NH(4)(+) ions also have to be taken into account. In addition, hydrogen-bonded base complexes involving more than two bases can occur. With the rapidly increasing number and structural diversity of nucleic acid structures known at atomic detail higher-order hydrogen-bonded base complexes, base polyads, have attracted much interest. This review provides an overview on the occurrence of base polyads in nucleic acid structures and describes computational studies on these nucleic acid building blocks.
氢键结合的碱基对是核酸结构和功能的重要决定因素。然而,其他相互作用,如碱基堆积、碱基-骨架和骨架-骨架相互作用,以及溶剂、金属或NH₄⁺离子所产生的影响也必须加以考虑。此外,还可能出现涉及两个以上碱基的氢键结合碱基复合物。随着已知原子细节的核酸结构数量迅速增加和结构多样性的提高,高阶氢键结合碱基复合物,即碱基多联体,引起了人们的极大兴趣。本综述概述了碱基多联体在核酸结构中的出现情况,并描述了对这些核酸结构单元的计算研究。