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Synthetic nucleic acid secondary structures containing the four stereoisomers of l,4-bis(thymine-l-yl)butane-2,3-diol

机译:包含1,4-双(胸腺嘧啶-1-基)丁烷-2,3-二醇的四个立体异构体的合成核酸二级结构

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摘要

The four stereoisomers of the double-headed acyclic nucleoside l,4-bis(thymine-l-yl)butane-2,3-diol were incorporated in the central position of four 13-mer oligonucleotides. The phosphoramidite building blocks were synthesized in four or six steps from either D- or L-2,3-O-isopropylidenethreitol. Two epimeric and fully deprotected double-headed nucleosides were analyzed by X-ray crystallography. The incorporation into oligonucleotides was hampered by steric hindrance and formation of a cyclic phosphate. The use of pyridinium chloride as the activator and a kinetic analysis based on ~(31)P NMR of the coupling and detritylation processes led to improved yields of the oligonucleotides. In comparison with the (S)-GNA monomer, one of the four stereoisomers was found to show a similar destabilization of a DNA duplex, indicating that the additional base can be introduced without a thermal penalty. Another stereoisomer was found to induce a thermal stabilization of a DNA:RNA three-way junction. Thus, the stereochemistry of this acyclic double-headed nucleoside motif is important, indicating potential for the design of artificial nucleic acid secondary structures.
机译:将双头无环核苷1,4-双(胸腺嘧啶-1-基)丁烷-2,3-二醇的四个立体异构体并入四个13聚体寡核苷酸的中心位置。亚磷酰胺结构单元是由D-或L-2,3-O-异丙基亚乙基苏糖醇以四或六个步骤合成的。通过X射线晶体学分析了两个差向异构和完全脱保护的双头核苷。位阻和环状磷酸酯的形成阻碍了寡核苷酸的掺入。使用氯化吡啶鎓作为活化剂以及基于偶联和去三苯甲基化过程的〜(31)P NMR的动力学分析导致​​寡核苷酸的产率提高。与(S)-GNA单体相比,发现四种立体异构体之一显示出类似的DNA双链体去稳定作用,表明可以引入额外的碱基而没有热损失。发现另一种立体异构体可诱导DNA:RNA三向连接的热稳定。因此,该无环双头核苷基序的立体化学很重要,表明了设计人工核酸二级结构的潜力。

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