Department of Chemistry, College of Chemistry and Chemical Engineering, The MOE Key Laboratory of Spectrochemical Analysis and Instrumentation, State Key Laboratory of Physical Chemistry of Solid Surfaces, Xiamen University, Xiamen 361005, P.R. China.
Bioconjug Chem. 2021 Sep 15;32(9):2065-2072. doi: 10.1021/acs.bioconjchem.1c00378. Epub 2021 Aug 18.
N-terminal cysteine (Cys)-specific reactions have been exploited for protein and peptide modifications. However, existing reactions for N-terminal Cys suffer from low reaction rate, unavoidable side reactions, or poor stability for reagents or products. Herein we report a fast, efficient, and selective conjugation between 2-benzylacrylaldehyde (BAA) and 1,2-aminothiol, which involves multistep reactions including aldimine condensation, Michael addition, and reduction of imine by NaBHCN. This conjugation proceeds with a rate constant of ∼2700 M s under neutral condition at room temperature to produce a pair of seven-membered ring diastereoisomers, which are stable under neutral and acidic conditions. This method enables the selective modifications of the N-terminal Cys residue without interference from the internal Cys and lysine residues, providing a useful alternative to existing approaches for site-specific peptide or protein modifications and synthesis of cyclic peptides.
N-端半胱氨酸(Cys)特异性反应已被用于蛋白质和肽的修饰。然而,现有的 N-端 Cys 反应存在反应速率低、不可避免的副反应或试剂或产物稳定性差等问题。在此,我们报告了 2-苯丙烯醛(BAA)和 1,2-氨基硫醇之间的快速、高效和选择性缀合,该反应涉及多步反应,包括醛亚胺缩合、迈克尔加成和 NaBHCN 还原亚胺。在中性条件下,室温下的反应速率常数约为 2700 M s -1 ,生成一对七元环非对映异构体,在中性和酸性条件下稳定。该方法能够选择性地修饰 N-端 Cys 残基,而不会干扰内部 Cys 和赖氨酸残基,为特定肽或蛋白质修饰以及环状肽的合成提供了一种有用的替代方法。