Chen J K, Schultz R G, Lloyd D H, Gryaznov S M
Lynx Therapeutics Inc., Hayward, CA 94545, USA.
Nucleic Acids Res. 1995 Jul 25;23(14):2661-8. doi: 10.1093/nar/23.14.2661.
An efficient synthesis of the novel nucleic acid analogs oligodeoxyribonucleotide N3'-->P5' phosphoramidates, where the 3'-oxygen is substituted by a 3'-nitrogen, is described. Synthesis of the title compounds was accomplished by the following synthetic steps. First, 5'-O-DMT base-protected-3'-amino-2',3'-dideoxynucleosides were prepared. The 3'-aminopyrimidines were obtained via the corresponding 2,3'-anhydronucleosides, whereas 3'-aminopurines were derived via 2'-deoxyxylo precursors. Second, using the prepared 3'-aminonucleosides, oligonucleotide N3'-->P5' phosphoramidates were synthesized on a solid support. Oligonucleotide chain assembly was based upon a carbon tetrachloride-driven oxidative coupling of the appropriately protected 3'-aminonucleosides with the 5'-H-phosphonate diester group, resulting in the formation of an internucleoside phosphoramidate link. Fully deprotected oligonucleotide N3'-->P5' phosphoramidates were characterized by ion exchange and reversed phase HPLC, capillary and slab gel electrophoresis and by 31P NMR analysis. Oligonucleotide N3'-->P5' phosphoramidates form remarkably stable duplexes with complementary RNA strands and also with themselves, where the melting temperature of the complexes exceeded that for the parent phosphodiester compounds by 26-33 degrees C. Additionally, duplexes formed by oligonucleotide phosphoramidates with single-stranded DNA were also more thermally stable than those formed by phosphodiesters. The described properties indicate that these compounds may have great potential in oligonucleotide-based diagnostics and therapeutic applications.
本文描述了新型核酸类似物寡脱氧核糖核苷酸N3'→P5'氨基磷酸酯的高效合成方法,其中3'-氧原子被3'-氮原子取代。标题化合物的合成通过以下合成步骤完成。首先,制备5'-O-DMT碱基保护的3'-氨基-2',3'-二脱氧核苷。3'-氨基嘧啶是通过相应的2,3'-脱水核苷获得的,而3'-氨基嘌呤则是通过2'-脱氧木糖前体衍生而来。其次,使用制备好的3'-氨基核苷,在固相载体上合成寡核苷酸N3'→P5'氨基磷酸酯。寡核苷酸链的组装基于四氯化碳驱动的适当保护的3'-氨基核苷与5'-H-膦酸二酯基团的氧化偶联,从而形成核苷间氨基磷酸酯键。完全脱保护的寡核苷酸N3'→P5'氨基磷酸酯通过离子交换和反相HPLC、毛细管和平板凝胶电泳以及31P NMR分析进行表征。寡核苷酸N3'→P5'氨基磷酸酯与互补RNA链以及它们自身形成非常稳定的双链体,其中复合物的解链温度比母体磷酸二酯化合物高出26 - 33℃。此外,寡核苷酸氨基磷酸酯与单链DNA形成的双链体在热稳定性上也比磷酸二酯形成的双链体更高。所述性质表明这些化合物在基于寡核苷酸的诊断和治疗应用中可能具有巨大潜力。