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Synthesis of amino-acid–nucleoside conjugates

机译:氨基酸-核苷结合物的合成

摘要

Representative derivatives of uridine-conjugated amino acids that have been suitably protected for Fmoc solid-phase chemistry have been prepared through efficient procedures that use “click” reactions as key steps, including thiol–ene radical reactions and copper-catalyzed azide alkyne cycloaddition (CuAAC) reactions. Several linkers between the amino acid and nucleoside units, including alkyl chains and a triazole ring, have been successfully employed. Alkyl chains offer retention of flexibility, to allow the bisubstrate analogues to adopt an appropriate orientation, whilst the triazole ring can promote additional interactions at the active sites of target enzymes. Furthermore, a neutral surrogate of the pyrophosphate unit has been prepared by using a Staudinger–Vilarrasa reaction as a key step. Neutral analogues are promising surrogates for avoiding difficulties owing to cell-membrane permeability.
机译:已经通过有效的步骤制备了已被Fmoc固相化学保护的尿嘧啶共轭氨基酸的代表性衍生物,这些步骤使用“点击”反应作为关键步骤,包括硫醇-烯自由基反应和铜催化的叠氮化物炔烃环加成反应(CuAAC) )反应。氨基酸和核苷单元之间的几个连接基,包括烷基链和三唑环,已被成功使用。烷基链保留了柔韧性,以使双底物类似物采用适当的方向,而三唑环则可以促进靶酶活性位点的其他相互作用。此外,通过使用Staudinger-Vilarrasa反应作为关键步骤,制备了焦磷酸盐单元的中性替代物。中性类似物是有望避免细胞膜通透性障碍的替代物。

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