Bridge-Clamp Bis(tetrazine)s with [N](8) pi-Stacking Interactions and Azido-s-Aryl Tetrazines: Two Classes of Doubly Clickable Tetrazines
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Titre | Bridge-Clamp Bis(tetrazine)s with [N](8) pi-Stacking Interactions and Azido-s-Aryl Tetrazines: Two Classes of Doubly Clickable Tetrazines |
Type de publication | Journal Article |
Year of Publication | 2020 |
Auteurs | Mboyi CD, Vivier D, Daher A, Fleurat-Lessard P, Cattey H, Devillers CH, Bernhard C, Denat F, Roger J, Hierso J-C |
Journal | ANGEWANDTE CHEMIE-INTERNATIONAL EDITION |
Volume | 59 |
Pagination | 1149-1154 |
Date Published | JAN 13 |
Type of Article | Article |
ISSN | 1433-7851 |
Mots-clés | click chemistry, Copper, cycloaddition, heteroaromatics, noncovalent interactions |
Résumé | Click chemistry at a tetrazine core is useful for bioorthogonal labeling and crosslinking. Introduced here are two new classes of doubly clickable s-aryl tetrazines synthesized by Cu-catalyzed cross-coupling. Homocoupling of o-brominated s-aryl tetrazines leads to bis(tetrazine)s structurally characterized by tetrazine cores arranged face-to-face. [N](8) pi-stacking interactions are essential to the conformation. Upon inverse electron demand Diels-Alder (iEDDA) cycloaddition, the bis(tetrazine)s produce a unique staple structure. The o-azidation of s-aryl tetrazines introduces a second proximal intermolecular clickable function that leads to double click chemistry opportunities. The stepwise introduction of fluorophores and then iEDDA cycloaddition, including bioconjugation to antibodies, was achieved on this class of tetrazines. This method extends to (thio)etherification, phosphination, trifluoromethylation and the introduction of various bioactive nitrogen-based heterocycles. |
DOI | 10.1002/anie.201911947, Early Access Date = {NOV 2019 |