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在批处理和流动条件下用光催化功能化脱氢丙氨酸衍生的肽。

Photocatalytic Functionalization of Dehydroalanine-Derived Peptides in Batch and Flow.

机构信息

Flow Chemistry Group, Van't Hoff Institute for Molecular Sciences (HIMS), University of Amsterdam, Science Park 904, 1098 XH, Amsterdam, The Netherlands.

Department of Drug Chemistry and Technologies, Sapienza University of Rome, P.le Aldo Moro 5, 00185, Rome, Italy.

出版信息

Angew Chem Int Ed Engl. 2024 May 6;63(19):e202403271. doi: 10.1002/anie.202403271. Epub 2024 Apr 8.

Abstract

Unnatural amino acids, and their synthesis by the late-stage functionalization (LSF) of peptides, play a crucial role in areas such as drug design and discovery. Historically, the LSF of biomolecules has predominantly utilized traditional synthetic methodologies that exploit nucleophilic residues, such as cysteine, lysine or tyrosine. Herein, we present a photocatalytic hydroarylation process targeting the electrophilic residue dehydroalanine (Dha). This residue possesses an α,β-unsaturated moiety and can be combined with various arylthianthrenium salts, both in batch and flow reactors. Notably, the flow setup proved instrumental for efficient scale-up, paving the way for the synthesis of unnatural amino acids and peptides in substantial quantities. Our photocatalytic approach, being inherently mild, permits the diversification of peptides even when they contain sensitive functional groups. The readily available arylthianthrenium salts facilitate the seamless integration of Dha-containing peptides with a wide range of arenes, drug blueprints, and natural products, culminating in the creation of unconventional phenylalanine derivatives. The synergistic effect of the high functional group tolerance and the modular characteristic of the aryl electrophile enables efficient peptide conjugation and ligation in both batch and flow conditions.

摘要

非天然氨基酸及其通过肽的后期功能化(LSF)合成在药物设计和发现等领域发挥着关键作用。历史上,生物分子的 LSF 主要利用了利用亲核残基(如半胱氨酸、赖氨酸或酪氨酸)的传统合成方法。在此,我们提出了一种针对亲电残基脱氢丙氨酸(Dha)的光催化氢芳基化反应。该残基具有α,β-不饱和部分,可与各种芳基噻蒽鎓盐结合,无论是在分批还是在流动反应器中。值得注意的是,流动装置对于有效扩大规模至关重要,为大量合成非天然氨基酸和肽铺平了道路。我们的光催化方法本质上温和,即使肽中含有敏感的官能团,也允许对其进行多样化处理。易于获得的芳基噻蒽鎓盐促进了含 Dha 的肽与各种芳烃、药物蓝图和天然产物的无缝集成,最终生成了非传统的苯丙氨酸衍生物。高官能团容忍度和芳基亲电试剂的模块化特性的协同作用,使得在分批和流动条件下都能实现有效的肽键偶联和连接。

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