Kadrmas J L, Ravin A J, Leontis N B
Department of Chemistry, Bowling Green State University, OH 43403, USA.
Nucleic Acids Res. 1995 Jun 25;23(12):2212-22. doi: 10.1093/nar/23.12.2212.
Competition binding and UV melting studies of a DNA model system consisting of three, four or five mutually complementary oligonucleotides demonstrate that unpaired bases at the branch point stabilize three- and five-way junction loops but destabilize four-way junctions. The inclusion of unpaired nucleotides permits the assembly of five-way DNA junction complexes (5WJ) having as few as seven basepairs per arm from five mutually complementary oligonucleotides. Previous work showed that 5WJ, having eight basepairs per arm but lacking unpaired bases, could not be assembled [Wang, Y.L., Mueller, J.E., Kemper, B. and Seeman, N.C. (1991) Biochemistry, 30, 5667-5674]. Competition binding experiments demonstrate that four-way junctions (4WJ) are more stable than three-way junctions (3WJ), when no unpaired bases are included at the branch point, but less stable when unpaired bases are present at the junction. 5WJ complexes are in all cases less stable than 4WJ or 3WJ complexes. UV melting curves confirm the relative stabilities of these junctions. These results provide qualitative guidelines for improving the way in which multi-helix junction loops are handled in secondary structure prediction programs, especially for single-stranded nucleic acids having primary sequences that can form alternative structures comprising different types of junctions.
由三个、四个或五个相互互补的寡核苷酸组成的DNA模型系统的竞争结合和紫外熔解研究表明,分支点处的未配对碱基可稳定三向和五向连接环,但会使四向连接不稳定。包含未配对核苷酸允许由五个相互互补的寡核苷酸组装每个臂仅有七个碱基对的五向DNA连接复合物(5WJ)。先前的工作表明,每个臂有八个碱基对但缺乏未配对碱基的5WJ无法组装[Wang, Y.L., Mueller, J.E., Kemper, B.和Seeman, N.C.(1991年)《生物化学》,30, 5667 - 5674]。竞争结合实验表明,当分支点处不包含未配对碱基时,四向连接(4WJ)比三向连接(3WJ)更稳定,但当连接处存在未配对碱基时则较不稳定。在所有情况下,5WJ复合物都比4WJ或3WJ复合物不稳定。紫外熔解曲线证实了这些连接的相对稳定性。这些结果为改进二级结构预测程序中处理多螺旋连接环的方式提供了定性指导方针,特别是对于具有可形成包含不同类型连接的替代结构的一级序列的单链核酸。