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Applications of Convertible Isonitriles in the Ligation and Macrocyclization of Multicomponent Reaction-Derived Peptides and Depsipeptides

机译:可转换异腈在多组分反应衍生肽和二肽的连接和大环化中的应用

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Peptide ligation and macrocyclization ate among the most relevant approaches in the field of peptide chemistry. Whereas a variety of strategies relying on coupling reagents and native chemical ligation are available, there is a continuous need for efficient peptide ligation and cyclization methods. Herein we report on the utilization of convertible isonitriles as effective synthetic tools for the ligation and macrocyclization of peptides arising from isocyanide-based multicomponent reactions. The strategy relies on the use of convertible isonitriles-derived from Fukuyama amines-and peptide carboxylic acids in Ugi and Passerini reactions to afford N-alkylated peptides and depsipeptides, respectively, followed by conversion of the C-terminal amide onto either N-peptidoacyl indoles or pyrroles. Such activated peptides proved efficient in the ligation to peptidic, lipidic and fluorescently labeled amines and in macrocyclization protocols. As a result, a wide set of N-substituted peptides (with methyl, glycosyl and amino acids as N-substituents), cyclic N-methylated peptides and a depsipeptide were produced in good yields using conditions that involve either classical heating or microwave irradiation. This report improves the repertoire of peptide covalent modification methods by exploiting the synthetic potential of multicomponent reactions and convertible isonitriles.
机译:肽连接和大环化是肽化学领域最相关的方法之一。尽管有各种依靠偶联试剂和天然化学连接的策略可供使用,但是仍然需要有效的肽连接和环化方法。在这里,我们报道了可转换的异腈作为有效的合成工具,用于基于异氰酸酯基多组分反应的肽的连接和大环化的报道。该策略依赖于在Ugi和Passerini反应中使用源自福山胺和肽羧酸的可转换异腈分别提供N-烷基化的肽和depsipeptide,然后将C-末端酰胺转化为N-肽基酰基吲哚或吡咯。事实证明,这种活化的肽在与肽,脂质和荧光标记的胺的连接以及大环化方案中是有效的。结果,使用涉及经典加热或微波辐射的条件,以良好的产率生产了多种N-取代的肽(以甲基,糖基和氨基酸作为N-取代基),环状N-甲基化的肽和二肽。该报告通过利用多组分反应和可转换的异腈的合成潜力,提高了肽共价修饰方法的功能。

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