Department of Chemistry, McGill University, 801 Sherbrooke Street West, Montreal, QC, H3A 0B8, Canada.
Chemistry. 2020 Jul 22;26(41):8857-8861. doi: 10.1002/chem.202001193. Epub 2020 Jul 3.
We demonstrate the first mechanochemical synthesis of DNA fragments by ball milling, enabling the synthesis of oligomers of controllable sequence and length using multi-step, one-pot reactions, without bulk solvent or the need to isolate intermediates. Mechanochemistry allowed for coupling of phosphoramidite monomers to the 5'-hydroxyl group of nucleosides, iodine/water oxidation of the resulting phosphite triester linkage, and removal of the 5'-dimethoxytrityl (DMTr) protecting group in situ in good yields (up to 60 % over three steps) to produce DNA dimers in a one-pot manner. H-Phosphonate chemistry under milling conditions enabled coupling and protection of the H-phosphonate linkage, as well as removal of the 5'-DMTr protecting group in situ, enabling a one-pot process with good yields (up to 65 % over three steps, or ca. 87 % per step). Sulfurization of the internucleotide linkage was possible using elemental sulfur (S8) or sulfur transfer reagents, yielding the target DNA phosphorothioate dimers in good yield (up to 80 % over two steps). This work opens the door to creation of solvent-free synthesis methodologies for DNA and RNA therapeutics.
我们通过球磨实现了 DNA 片段的首例机械化学合成,能够使用多步一锅反应合成可控序列和长度的寡聚物,无需使用大量溶剂或需要分离中间体。机械化学允许将亚磷酰胺单体与核苷的 5'-羟基偶联,碘/水氧化得到的亚磷酸三酯键,以及原位以良好的收率(高达三步 60%)去除 5'-二甲氧基三苯甲基(DMTr)保护基,以一步法生成 DNA 二聚体。在研磨条件下的 H-膦酸酯化学能够进行 H-膦酸酯键的偶联和保护,以及原位去除 5'-DMTr 保护基,从而实现具有良好收率(高达三步 65%,或每步约 87%)的一锅法工艺。使用元素硫(S8)或硫转移试剂可以实现核苷酸间键的硫化,以良好的收率(两步高达 80%)得到目标 DNA 硫代磷酸二聚体。这项工作为 DNA 和 RNA 治疗药物的无溶剂合成方法的创建开辟了道路。