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  2. 3-Bromotetrazine: labelling of macromolecules via monosubstituted bifunctional s-tetrazines

3-Bromotetrazine: labelling of macromolecules via monosubstituted bifunctional s-tetrazines

  • Chem Sci. 2020 Feb 10;11(11):3042-3047. doi: 10.1039/c9sc06169j.
Simon D Schnell 1 Lukas V Hoff 1 Advaita Panchagnula 1 Maximilian H H Wurzenberger 2 Thomas M Klapötke 2 Simon Sieber 1 Anthony Linden 1 Karl Gademann 1
Affiliations

Affiliations

  • 1 University of Zurich Winterthurerstrasse 190 8057 Zurich Switzerland Karl.Gademann@uzh.ch.
  • 2 Ludwig-Maximilians-Universität Butenandtstrasse 5-13 81377 Munich Germany.
Abstract

We report the synthesis and first characterisation of the novel chemical probe 3-bromotetrazine and establish its reactivity towards nucleophiles. This led to the synthesis of several novel classes of 3-monosubstituted s-tetrazines. A remarkable functional group selectivity is observed and is utilised to site-selectively functionalise different complex molecules. The stability of 3-bromotetrazine under the reaction conditions facilitated the development of a protocol for protein functionalisation, which enabled a "minimal", bifunctional tetrazine unit as a bio-orthogonal handle for inverse electron demand Diels-Alder reactions. Additionally, a novel tetrazine-based chemical probe was developed and its application in the context of thiol-targeted natural product isolation and labelling of mammalian cells is demonstrated.

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