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探索三环-DNA嘌呤序列形成Hoogsteen和反向Hoogsteen双链体及三链体的情况。

Exploring Hoogsteen and reversed-Hoogsteen duplex and triplex formation with tricyclo-DNA purine sequences.

作者信息

Renneberg Dorte, Leumann Christian J

机构信息

Department of Chemistry and Biochemistry, University of Bern, Freiestrasse 3, 3012 Bern, Switzerland.

出版信息

Chembiochem. 2004 Aug 6;5(8):1114-8. doi: 10.1002/cbic.200400069.

Abstract

The duplex- and triplex-formation properties of the tricyclo-DNA purine decamer 5'p-gagaaggaaa-3' as a single strand or as part of a hairpin duplex with corresponding parallel and antiparallel pyrimidine DNA and RNA complements, as well as with antiparallel purine DNA and RNA complements, were investigated by UV melting curve analysis, circular dichroism spectroscopy, and gel mobility shift experiments. It was found that tricyclo-DNA forms very stable duplexes with the pyrimidine RNA and DNA complements not only in the Watson-Crick pairing mode, but also in the Hoogsteen one. Below pH 6.0, the tc-DNA/DNA and tc-DNA/RNA Hoogsteen duplexes were found to be more stable than the corresponding Watson-Crick DNA duplexes. Triplexes of the hairpin structure with parallel pyrimidine complements revealed even stronger Hoogsteen pairing relative to the duplexes, presumably due to structural preorganization phenomena. Triplex formation with antiparallel pyrimidine and purine third strands (reversed-Hoogsteen motif) could not be observed and seem to be unstable.

摘要

通过紫外熔解曲线分析、圆二色光谱和凝胶迁移率变动实验,研究了三环-DNA嘌呤十聚体5'p-gagaaggaaa-3'作为单链或作为发夹双链体一部分时,与相应的平行和反平行嘧啶DNA及RNA互补链,以及与反平行嘌呤DNA和RNA互补链形成双链和三链的性质。结果发现,三环-DNA不仅能以沃森-克里克配对模式,还能以 hoogsteen 模式与嘧啶RNA和DNA互补链形成非常稳定的双链体。在pH 6.0以下,发现tc-DNA/DNA和tc-DNA/RNA hoogsteen双链体比相应的沃森-克里克DNA双链体更稳定。具有平行嘧啶互补链的发夹结构三链体相对于双链体显示出更强的hoogsteen配对,这可能是由于结构预组织现象。未观察到与反平行嘧啶和嘌呤第三链形成三链体(反向-hoogsteen基序),且似乎不稳定。

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