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首页> 外文期刊>Nucleic Acids Research >Relative stabilities of triple helices composed of combinations of DNA, RNA and 2'-O-methyl-RNA backbones: chimeric circular oligonucleotides as probes.
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Relative stabilities of triple helices composed of combinations of DNA, RNA and 2'-O-methyl-RNA backbones: chimeric circular oligonucleotides as probes.

机译:由DNA,RNA和2'-O-甲基-RNA主链组成的三重螺旋的相对稳定性:嵌合环状寡核苷酸作为探针。

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摘要

Described is a systematic study of the effects of varied backbone structure on the stabilities of pyr.pur.pyr triple helices. The effects were measured using six circular 34 base oligonucleotides containing DNA (D), RNA (R) and/or 2'-O-methyl-RNA (M) residues designed to bind a complementary single-stranded purine target strand by triple helix formation. Eighteen different backbone combinations were studied at pH 5.5 and 7.0 by optical melting experiments and the results compared with the stabilities of the corresponding Watson-Crick duplexes. When the target purine strand is DNA, all circles form pH-dependent triple helical complexes which are considerably stronger than the duplexes alone. When RNA is the target, five of the nine complexes studied are of the pH-dependent triplex type and the other four complexes are not significantly stronger than the corresponding duplexes. The results are useful in the design of the highest affinity ligands for single- and double-stranded DNAs and RNAs and also point out novel ways to engender DNA- or RNA-selective binding.
机译:系统描述了各种骨架结构对pyr.pur.pyr三重螺旋的稳定性的影响。使用六种圆形的34个碱基的寡核苷酸(包含DNA(D),RNA(R)和/或2'-O-甲基-RNA(M)残基)来测量效果,这些残基旨在通过三螺旋的形成结合互补的单链嘌呤靶链。通过光学熔融实验研究了在pH 5.5和7.0下的18种不同的主链组合,并将结果与​​相应的Watson-Crick双链体的稳定性进行了比较。当目标嘌呤链是DNA时,所有环都形成pH依赖性的三重螺旋复合物,其强度比单独的双链体强得多。当以RNA为靶标时,研究的9种复合物中的5种具有pH依赖的三链体类型,而其他4种复合体的强度则不强于相应的双链体。该结果可用于设计单链和双链DNA和RNA的最高亲和力配体,并指出产生DNA或RNA选择性结合的新方法。

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