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肽在固相上的后期胺化反应

Late-Stage Amination of Peptides on the Solid Phase.

作者信息

Brinkhofer Julian, Werner Marius, Kokollari Agon, Pan Shih-Yu, Klein Christian, Pham Truc Lam, Thomas Franziska

机构信息

Institute of Organic Chemistry, Heidelberg University, Im Neuenheimer Feld 270, 69120, Heidelberg, Germany.

Institute of Pharmacy and Molecular Biotechnology (IPMB), Heidelberg University, Im Neuenheimer Feld 364, 69120, Heidelberg, Germany.

出版信息

Chemistry. 2025 Jun 17;31(34):e202501229. doi: 10.1002/chem.202501229. Epub 2025 May 13.

Abstract

Late-stage peptide modification is a powerful tool for rapidly generating a library of peptide mimetics, for example, for drug discovery or catalyst development. While late-stage modifications exist for many types of structural features, methods for introducing amines into peptides via a late-stage approach are rare, despite their enormous potential for the development of peptide therapeutics. Here we present a protocol for introducing amines into peptides by our established on-resin iodination-substitution approach. Our method is compatible with a wide variety of amines, including primary and secondary amines, anilines, and other heteroaromatic N-nucleophiles mostly giving good to excellent yields. We introduce amines that are pharmacologically relevant as well as those that can impart catalytic or metal-binding properties into the peptide of interest. As a proof-of-concept study, we introduce the metal ligand tris(2-aminoethyl)amine (tren) into a tryptophan zipper scaffold using our late-stage amination approach to explore metal-induced stapling. Indeed, metal complexation via the tren ligand resulted in a thermal stabilization of more than 30 K in one of our tryptophan zipper designs.

摘要

晚期肽修饰是一种用于快速生成肽模拟物文库的强大工具,例如用于药物发现或催化剂开发。虽然针对许多类型的结构特征都存在晚期修饰方法,但通过晚期方法将胺引入肽中的方法却很少见,尽管它们在肽疗法开发方面具有巨大潜力。在此,我们展示了一种通过我们已确立的树脂上碘化-取代方法将胺引入肽中的方案。我们的方法与多种胺兼容,包括伯胺和仲胺、苯胺以及其他杂芳族N-亲核试剂,大多数情况下产率良好至优异。我们引入了具有药理学相关性的胺以及那些可以赋予目标肽催化或金属结合特性的胺。作为概念验证研究,我们使用晚期胺化方法将金属配体三(2-氨基乙基)胺(tren)引入色氨酸拉链支架中,以探索金属诱导的成环。事实上,通过tren配体进行金属络合在我们的一种色氨酸拉链设计中导致热稳定性提高了30 K以上。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57bd/12172594/42b471e51985/CHEM-31-e202501229-g002.jpg

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