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首页> 外文期刊>Nucleic acids research >Synthesis and structure assignments of amide protected nucleosides and their use as phosphoramidites in deoxyoligonucleotide synthesis
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Synthesis and structure assignments of amide protected nucleosides and their use as phosphoramidites in deoxyoligonucleotide synthesis

机译:酰胺保护的核苷的合成和结构分配及其在脱氧寡核苷酸合成中作为亚磷酰胺的用途

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The syntheses of several amide protected deoxyguanosine- as well as thymidine nucleosides are described. These compounds were synthesized according to the Mitsunobu reaction and Michael addition. In contradiction to previous studies we have discovered that the Michael addition gives only products derived from N-alkylation. The occurence of N- or O-alkylation was assigned by means of two dimensional 1H, 13C-COLOC-NMR spectroscopy. Further, we have found that the Mitsunobu reaction used for the protection of the amide function of dG is limited to alcohols without acidic hydrogen atoms. Amide protected phosphoramidites (15, 16) were used for the preparation of deoxyoligonucleotides with a large number of guanine and thymine bases using two different coupling times. We have shown that there is no experimentally detectable difference in the quality of the products if the starting monomer is amide protected or not.
机译:描述了几种酰胺保护的脱氧鸟苷以及胸苷核苷的合成。这些化合物根据Mitsunobu反应和Michael加成合成。与先前的研究相反,我们发现迈克尔加成仅产生衍生自N-烷基化的产物。通过二维 1 H, 1 3 C-COLOC-NMR光谱确定N-或O-烷基化的发生。此外,我们发现,用于保护dG的酰胺功能的Mitsunobu反应限于没有酸性氢原子的醇。使用酰胺保护的亚磷酰胺(15、16),通过两次不同的偶联时间来制备具有大量鸟嘌呤和胸腺嘧啶碱基的脱氧寡核苷酸。我们已经表明,如果起始单体是否经过酰胺保护,则在产品质量上没有实验可检测到的差异。

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