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反义技术中顺式和反式 α-l-[4.3.0]双环 DNA 单体的合成:双环核苷立体选择性形成的方法。

Synthesis of cis- and trans-α-l-[4.3.0]bicyclo-DNA monomers for antisense technology: methods for the diastereoselective formation of bicyclic nucleosides.

机构信息

Department of Chemistry, Université de Montréal , Montréal, Québec H3C 3J7, Canada.

出版信息

J Org Chem. 2013 Sep 20;78(18):9051-63. doi: 10.1021/jo401166q. Epub 2013 Sep 4.

Abstract

Two α-L-ribo-configured bicyclic nucleic acid modifications, represented by analogues 12 and 13, which are epimeric at C3' and C5' have been synthesized using a carbohydrate-based approach to build the bicyclic core structure. An intramolecular L-proline-mediated aldol reaction was employed to generate the cis-configured ring junction of analogue 12 and represents a rare application of this venerable organocatalytic reaction to a carbohydrate system. In the case of analogue 13, where a trans-ring junction was desired, an intermolecular diastereoselective Grignard reaction followed by ring-closing metathesis was used. In order to set the desired stereochemistry at the C5' positions of both nucleoside targets, a study of diastereoselective Lewis acid mediated allylation reactions on a common bicyclic aldehyde precursor was carried out. Analogue 12 was incorporated in oligonucleotide sequences, and thermal denaturation experiments indicate that it is destabilizing when paired with complementary DNA and RNA. However, this construct shows a significant improvement in nuclease stability relative to a DNA oligonucleotide.

摘要

两种α-L-核糖构型的双环核酸修饰物,由类似物 12 和 13 代表,它们在 C3'和 C5'处为差向异构体,已通过基于碳水化合物的方法合成,以构建双环核心结构。采用分子内 L-脯氨酸介导的醛醇反应生成类似物 12 的顺式环结,这代表了这种古老的有机催化反应在碳水化合物体系中的罕见应用。对于需要反式环结的类似物 13,使用了分子间非对映选择性格氏试剂反应,然后进行闭环复分解反应。为了在两个核苷靶标中的 C5'位置设置所需的立体化学,对常见的双环醛前体进行了非对映选择性路易斯酸介导的烯丙基化反应研究。类似物 12 被掺入寡核苷酸序列中,热变性实验表明,当与互补的 DNA 和 RNA 配对时,它会不稳定。然而,与 DNA 寡核苷酸相比,该构建体在核酸酶稳定性方面有显著提高。

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