Bioorthogonal Tetrazine Carbamate Cleavage by Highly Reactive trans -Cyclooctene

化学 四嗪 生物正交化学 结合 环辛烯 连接器 组合化学 反应中间体 点击化学 氨基甲酸酯 立体化学 药物化学 有机化学 催化作用 数学分析 计算机科学 数学 操作系统
作者
Arthur H. A. M. van Onzen,Ron M. Versteegen,Freek J. M. Hoeben,Ivo A. W. Filot,Raffaella Rossin,Tong Zhu,Jeremy Wu,Peter J. Hudson,Henk M. Janssen,Wolter ten Hoeve,Marc S. Robillard
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:142 (25): 10955-10963 被引量:127
标识
DOI:10.1021/jacs.0c00531
摘要

The high rate of the ‘click-to-release’ reaction between an allylic substituted trans -cyclooctene linker and a tetrazine activator has enabled exceptional control over chemical and biological processes. Here we report the development of a new bioorthogonal cleavage reaction based on trans -cyclooctene and tetrazine, which allows the use of highly reactive trans -cyclooctenes, leading to 3 orders of magnitude higher click rates compared to the parent reaction, and 4 to 6 orders higher than other cleavage reactions. In this new pyridazine elimination mechanism, wherein the roles are reversed, a trans -cyclooctene activator reacts with a tetrazine linker that is substituted with a methylene-linked carbamate, leading to a 1,4-elimination of the carbamate and liberation of a secondary amine. Through a series of mechanistic studies, we identified the 2,5-dihydropyridazine tautomer as the releasing species and found factors that govern its formation and subsequent fragmentation. The bioorthogonal utility was demonstrated by the selective cleavage of a tetrazine-linked antibody–drug conjugate by trans -cyclooctenes, affording efficient drug liberation in plasma and cell culture. Finally, the parent and the new reaction were compared at low concentration, showing that the use of a highly reactive trans -cyclooctene as the activator leads to a complete cycloaddition reaction with the antibody–drug conjugate in seconds vs hours for the parent system. Although the subsequent release from the IEDDA adduct is slower, we believe that this new reaction may allow markedly reduced click-to-release reagent doses in vitro and in vivo and could expand the application scope to conditions wherein the trans -cyclooctene has limited stability.
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