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使用外部分离的气态连接试剂选择性大环化未保护的肽。

Selective Macrocyclization of Unprotected Peptides with an Ex Situ Gaseous Linchpin Reagent.

机构信息

Department of Chemistry, Rice University, Houston, Texas, 77005, United States.

Carbon Dioxide Activation Center (CADIAC), Interdisciplinary Nanoscience Center, Department of Chemistry, Aarhus University, Gustav Wieds Vej 14, 8000, Aarhus C, Denmark.

出版信息

Angew Chem Int Ed Engl. 2024 Jul 22;63(30):e202405344. doi: 10.1002/anie.202405344. Epub 2024 Jun 21.

Abstract

Peptide cyclization has dramatic effects on a variety of important properties, enhancing metabolic stability, limiting conformational flexibility, and altering cellular entry and intracellular localization. The hydrophilic, polyfunctional nature of peptides creates chemoselectivity challenges in macrocyclization, especially for natural sequences without biorthogonal handles. Herein, we describe a gaseous sulfonyl chloride derived reagent that achieves amine-amine, amine-phenol, and amine-aniline crosslinking through a minimalist linchpin strategy that affords macrocyclic urea or carbamate products. The cyclization reaction is metal-mediated and involves a novel application of sulfine species that remains unexplored in aqueous or biological contexts. The aqueous method delivers unique cyclic or bicyclic topologies directly from a variety of natural bioactive peptides without the need for protecting-group strategies.

摘要

肽环化对多种重要性质具有显著影响,可增强代谢稳定性、限制构象灵活性,并改变细胞进入和细胞内定位。肽的亲水性、多功能性质在大环化中带来了化学选择性挑战,特别是对于没有生物正交接头的天然序列。在此,我们描述了一种源自气态磺酰氯的试剂,该试剂通过最小化的连接策略实现了胺-胺、胺-酚和胺-苯胺的交联,从而得到大环脲或氨基甲酸酯产物。该环化反应是金属介导的,涉及到亚砜物种的新应用,而该应用在水相或生物环境中尚未得到探索。该水相方法无需保护基策略,可直接从多种天然生物活性肽中得到独特的环状或双环拓扑结构。

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