Leontis N B, Hills M T, Piotto M, Malhotra A, Nussbaum J, Gorenstein D G
Department of Chemistry, Bowling Green State University, Ohio 43403.
J Biomol Struct Dyn. 1993 Oct;11(2):215-23. doi: 10.1080/07391102.1993.10508722.
The solution structure of a DNA three-way junction (TWJ) containing two unpaired thymidines was elucidated using two- and three-dimensional 1H nuclear magnetic resonance (NMR) spectroscopy. TWJs with unpaired nucleotides are ubiquitous structural motifs of complex single-stranded nucleic acids. In the presence of Mg2+, the TWJ complex adopts a unique conformation in which the bases of one of the oligonucleotides ("strand 1") are continuously stacked across the junction. Guanosine 8 of strand 3 (S3-G8), which pairs with S1-C5, stacks on S2-G5, which is paired to S1-C6. The unpaired thymidine bases (S3-T6 and S3-T7) are exposed to the solvent, whereas the sugar of S3-G8 is largely buried. S3-T6 also interacts with the sugar residue of S3-G11. All three stems conform to B-type DNA.
利用二维和三维¹H核磁共振(NMR)光谱法阐明了含有两个未配对胸腺嘧啶的DNA三向连接(TWJ)的溶液结构。带有未配对核苷酸的TWJ是复杂单链核酸中普遍存在的结构基序。在Mg²⁺存在的情况下,TWJ复合物呈现出一种独特的构象,其中一条寡核苷酸(“链1”)的碱基在连接点处连续堆积。与S1-C5配对的链3的鸟苷8(S3-G8)堆积在与S1-C6配对的S2-G5上。未配对的胸腺嘧啶碱基(S3-T6和S3-T7)暴露于溶剂中,而S3-G8的糖则大部分被掩埋。S3-T6还与S3-G11的糖残基相互作用。所有三个茎都符合B型DNA。