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Characterization of the 6-methyl isoxanthopterin (6-MI) base analog dimer, a spectroscopic probe for monitoring guanine base conformations at specific sites in nucleic acids

机译:表征6-甲基异黄蝶呤(6-MI)基础类似物二聚体,一种用于监测核酸特定位点的鸟嘌呤碱基构象的光谱探针

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摘要

We here characterize local conformations of site-specifically placed pairs of guanine (G) residues in RNA and DNA, using 6-methyl isoxanthopterin (6-MI) as a conformational probe. 6-MI is a base analog of G and spectroscopic signals obtained from pairs of adjacent 6-MI residues reflect base-base interactions that are sensitive to the sequence context, local DNA conformation and solvent environment of the probe bases. CD signals show strong exciton coupling between stacked 6-MI bases in double-stranded (ds) DNA; this coupling is reduced in single-stranded (ss) DNA sequences. Solvent interactions reduce the fluorescence of the dimer probe more efficiently in ssDNA than dsDNA, while self-quenching between 6-MI bases is enhanced in dsDNA. 6-MI dimer probes closely resemble adjacent GG residues, in that these probes have minimal effects on the stability of dsDNA and on interactions with solvent additive betaine. They also serve as effective template bases, although further polymerase-dependent extension of DNA primers past 6-MI template bases is significantly inhibited. These probes are also used to monitor DNA 'breathing' at model replication forks. The 6-MI dimer probe can serve in many contexts as a useful tool to investigate GG conformations at specific sites within the nucleic acid frameworks of functioning macromolecular machines in solution.
机译:我们在这里使用6-甲基异黄ox呤(6-MI)作为构象探针表征RNA和DNA中的鸟嘌呤(G)残基对的特定位置的局部构象。 6-MI是G的碱基类似物,从成对的相邻6-MI残基对获得的光谱信号反映了碱基-碱基相互作用,该相互作用对探针碱基的序列背景,局部DNA构象和溶剂环境敏感。 CD信号显示出双链(ds)DNA中堆积的6-MI碱基之间的强激子耦合;这种偶联减少了单链(ss)DNA序列。溶剂相互作用比dsDNA更有效地减少了ssDNA中二聚体探针的荧光,而dsDNA中增强了6-MI碱基之间的自猝灭。 6-MI二聚体探针非常类似于相邻的GG残基,因为这些探针对dsDNA的稳定性以及与溶剂添加剂甜菜碱的相互作用影响很小。它们也用作有效的模板碱基,尽管显着抑制了DNA引物超过6-MI模板碱基的进一步聚合酶依赖性延伸。这些探针还用于在模型复制叉处监测DNA的“呼吸”。 6-MI二聚体探针可在许多情况下用作研究溶液中起作用的大分子机器的核酸框架内特定位点的GG构象的有用工具。

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