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包含3'-硫代缩醛连接子和RNA A-序列的RNA×DNA杂交双链体的溶液结构

Solution structure of an RNA x DNA hybrid duplex containing a 3'-thioformacetal linker and an RNA A-tract.

作者信息

Cross C W, Rice J S, Gao X

机构信息

Department of Chemistry, University of Houston, Texas 77204-5641, USA.

出版信息

Biochemistry. 1997 Apr 8;36(14):4096-107. doi: 10.1021/bi962382k.

Abstract

Neutral and achiral backbone linkers are promising replacements for the phosphodiester linkages of antisense oligonucleotides that target mRNA sequences. Results are presented here for the solution structure elucidation by NMR of an RNA x DNA hybrid duplex, r(GCGCAAAACGCG) x d(CGCGTT-SCH2O-TTGCGC) (designated RIII), containing a 3'-thioformacetal (3'-TFMA) backbone substitution in the DNA strand. The 3'-thioformacetal linker can be accommodated in the hybrid duplex in a conformation that is drastically different from its form in a DNA x DNA duplex but close to that of the canonical A-form helix, reflecting the sequence requirement for hybridization. While the global features of RIII are similar to what are described in the literature, the 3'-TFMA modification drives sugar puckers of the adjacent residues to more C3'-endo-like conformations and causes distortions in related twist angles and helical rises. The helical conformation analyses of each of the two strands and the hybrid duplex enable a clear account of the conformational variability of both the DNA and RNA strands. The A-tract in the RNA strand features an overall straight helix and a more prominent bend at the 3'-end CG step. The structure of RIII provides a structural basis for the improved thermal stability of RIII compared to the corresponding DNA x DNA duplex and insights into the factors that are important concerns for the design of new, effective antisense oligonucleotides.

摘要

中性且无手性的主链连接体有望替代靶向mRNA序列的反义寡核苷酸中的磷酸二酯键。本文展示了通过核磁共振(NMR)对一种RNA×DNA杂交双链体r(GCGCAAAACGCG)×d(CGCGTT-SCH2O-TTGCGC)(命名为RIII)进行溶液结构解析的结果,该双链体在DNA链中含有3'-硫代缩醛(3'-TFMA)主链取代。3'-硫代缩醛连接体能够以一种与在DNA×DNA双链体中截然不同的构象容纳于杂交双链体中,但接近标准A-型螺旋的构象,这反映了杂交的序列要求。虽然RIII的整体特征与文献中描述的相似,但3'-TFMA修饰促使相邻残基的糖环构象更接近C3'-内向型,并导致相关扭转角和螺旋上升发生扭曲。对两条链以及杂交双链体各自的螺旋构象分析能够清晰地解释DNA链和RNA链的构象变异性。RNA链中的A-序列特征为整体呈直螺旋,且在3'-端CG步处有更明显的弯曲。RIII的结构为RIII相较于相应的DNA×DNA双链体具有更高的热稳定性提供了结构基础,并为设计新型有效反义寡核苷酸时的重要考虑因素提供了见解。

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