Shanghai Key Laboratory for Molecular Engineering of Chiral Drugs, School of Chemistry and Chemical Engineering, Frontiers Science Center for Transformative Molecules, Shanghai Jiao Tong University, No. 800, Dongchuan Rd, Shanghai, 200240, China.
School of Chemistry and Materials Science, Hangzhou Institute for Advanced Study, University of Chinese Academy of Sciences, 1 Sub-lane Xiangshan, Hangzhou, 310024, China.
Angew Chem Int Ed Engl. 2022 Jan 26;61(5):e202111388. doi: 10.1002/anie.202111388. Epub 2021 Dec 16.
Site-selective peptide functionalization provides a straightforward and cost-effective access to diversify peptides for biological studies. Among many existing non-invasive peptide conjugations methodologies, photoredox catalysis has emerged as one of the powerful approaches for site-specific manipulation on native peptides. Herein, we report a highly N-termini-specific method to rapidly access itaconated peptides and their derivatives through a combination of transamination and photoredox conditions. This strategy exploits the facile reactivity of peptidyl-dihydropyridine in the complex peptide settings, complementing existing approaches for bioconjugations with excellent selectivity under mild conditions. Distinct from conventional methods, this method utilizes the highly reactive carbamoyl radical derived from a peptidyl-dihydropyridine. In addition, this itaconated peptide can be further functionalized as a Michael acceptor to access the corresponding peptide-protein conjugate.
通过选择性肽功能化,可以直接且经济高效地将肽多样化,用于生物研究。在现有的许多非侵入性肽偶联方法中,光氧化还原催化已成为对天然肽进行特异性操作的强大方法之一。在此,我们报告了一种高度 N-末端特异性的方法,通过转氨和光氧化还原条件的组合,快速获得衣康酸肽及其衍生物。该策略利用了复杂肽环境中肽基二氢吡啶的易反应性,在温和条件下与现有的生物偶联方法相比具有优异的选择性。与传统方法不同,该方法利用了源自肽基二氢吡啶的高反应性碳酰胺基自由基。此外,这种衣康酸肽可以进一步官能化作为迈克尔受体,以获得相应的肽-蛋白质缀合物。