Center for Natural Product Research, Faculty of Chemistry , University of Havana , Zapata y G , Havana 10400 , Cuba.
Chem Rev. 2019 Sep 11;119(17):9836-9860. doi: 10.1021/acs.chemrev.8b00744. Epub 2019 Apr 16.
In the past decade, multicomponent reactions have experienced a renaissance as powerful peptide macrocyclization tools enabling the rapid creation of skeletal complexity and diversity with low synthetic cost. This review provides both a historical and modern overview of the development of the peptide multicomponent macrocyclization as a strategy capable to compete with the classic peptide cyclization methods in terms of chemical efficiency and synthetic scope. We prove that the utilization of multicomponent reactions for cyclizing peptides by either their termini or side chains provides a key advantage over those more established methods; that is, the possibility to explore the cyclic peptide chemotype space not only at the amino acid sequence but also at the ring-forming moiety. Owing to its multicomponent nature, this type of peptide cyclization process is well-suited to generate diversity at both the - and -cyclic fragments formed during the ring-closing step, which stands as a distinctive and useful characteristic for the creation and screening of cyclic peptide libraries. Examples of the novel multicomponent peptide stapling approach and heterocycle ring-forming macrocyclizations are included, along with multicomponent methods incorporating macrocyclization handles and the one-pot syntheses of macromulticyclic peptide cages. Interesting applications of this strategy in the field of drug discovery and chemical biology are provided.
在过去的十年中,多组分反应作为强大的肽大环化工具经历了复兴,能够以低合成成本快速创造出复杂多样的骨架。本综述提供了肽多组分大环化发展的历史和现代概述,证明了作为一种能够在化学效率和合成范围方面与经典肽环化方法相竞争的策略,该方法具有多功能性。我们证明,通过肽的末端或侧链进行多组分反应来环化肽提供了优于那些更成熟方法的关键优势;也就是说,不仅可以在氨基酸序列上,还可以在形成环的部分上探索环状肽的化学型空间。由于其多组分性质,这种类型的肽环化过程非常适合在环化步骤中形成的 - 和 - 环片段中产生多样性,这是创建和筛选环状肽文库的一个独特而有用的特征。包括新型多组分肽订书钉方法和杂环环形成大环化的例子,以及包含大环化手柄的多组分方法和大分子多环肽笼的一锅合成。提供了该策略在药物发现和化学生物学领域的有趣应用。