| Literature DB >> 29243853 |
Sebastian J Siegl1, Arcadio Vázquez1, Rastislav Dzijak1, Martin Dračínský1, Juraj Galeta1, Robert Rampmaier1, Blanka Klepetářová1, Milan Vrabel1.
Abstract
Fluorogenic bioorthogonal reactions enable visualization of biomolecules under native conditions with excellent signal-to-noise ratio. Here, we present the design and synthesis of conformationally-strained aziridine-fused trans-cyclooctene (aza-TCO) dienophiles, which lead to the formation of fluorescent products in tetrazine ligations without the need for attachment of an extra fluorophore moiety. The presented aza-TCOs adopt the highly strained "half-chair" conformation, which was predicted computationally and confirmed by NMR measurements and X-ray crystallography. Kinetic studies revealed that the aza-TCOs belong to the most reactive dienophiles known to date. The potential of the newly developed aza-TCO probes for bioimaging applications is demonstrated by protein labeling experiments, imaging of cellular glycoconjugates and peptidoglycan imaging of live bacteria.Entities:
Keywords: Diels-Alder reaction; cell labeling; fluorogenic; tetrazines; trans-cyclooctene
Year: 2018 PMID: 29243853 DOI: 10.1002/chem.201705188
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236