Department of Medicinal and Life Sciences, Faculty of Pharmaceutical Sciences, Tokyo University of Science, 2641 Yamazaki, Noda, Chiba 278-8510, Japan.
Department of Medical Genome Sciences, Graduate School of Frontier Sciences, The University of Tokyo, Kashiwa, Chiba 277-8562, Japan.
J Org Chem. 2023 Aug 4;88(15):10617-10631. doi: 10.1021/acs.joc.3c00659. Epub 2023 Jul 18.
In this study, we successfully synthesized several kinds of -modified nucleic acids from boranophosphate DNAs via an acyl phosphite intermediate in solution and on a solid support. In the solution-phase synthesis, phosphorothioate diester, phosphotriester, and phosphoramidate diester were synthesized in a one-pot reaction from boranophosphodiester via the conversion of an acyl phosphite as a key intermediate. In addition, doubly -modified nucleic acid derivatives which were difficult to synthesize by the phosphoramidite and -phosphonate methods were also obtained by the conversion reaction. In the solid-phase synthesis, a boranophosphate derivative was synthesized on a solid support using the -boranophosphonate method. Then, an acyl phosphite intermediate was formed by treatment with pivaloyl chloride in pyridine, followed by appropriate transformations to obtain the -modified derivatives such as phosphotriester and phosphorothioate diester. Notably, it was suggested that the conversion reaction of a boranophosphate to a phosphorothioate diester proceeded with retention of the stereochemistry of the phosphorous center. In addition, a phosphorothioate/phosphate chimeric dodecamer was successfully synthesized from a boranophosphate/phosphate chimeric dodecamer using the same strategy. Therefore, boranophosphate derivatives are versatile precursors for the synthesis of -modified DNA, including chimeric derivatives.
在这项研究中,我们通过酰基亚磷酸酯中间体在溶液中和固体载体上成功地从硼磷 DNA 合成了几种 - 修饰的核酸。在溶液相合成中,通过酰基亚磷酸酯作为关键中间体的转化,从硼磷磷酸二酯一锅反应中合成了硫代磷酸二酯、磷酸三酯和亚磷酰胺二酯。此外,还通过转化反应获得了通过亚磷酰胺和 - 膦酸酯方法难以合成的双重修饰的核酸衍生物。在固相合成中,使用 - 硼磷酸酯法在固体载体上合成了硼磷衍生物。然后,用三氟乙酸酐在吡啶中处理形成酰基亚磷酸酯中间体,然后进行适当的转化,得到如磷酸三酯和硫代磷酸二酯等 - 修饰的衍生物。值得注意的是,硼磷酸酯向硫代磷酸二酯的转化反应保留了磷中心的立体化学。此外,还使用相同的策略从硼磷/磷酸嵌合十二聚体成功合成了硫代磷酸/磷酸嵌合十二聚体。因此,硼磷衍生物是合成包括嵌合衍生物在内的 - 修饰 DNA 的多功能前体。