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Cysteine-Selective Phosphonamidate Electrophiles for Modular Protein Bioconjugations.

Marc-André KasperMaria GlanzAndreas StenglMartin PenkertSimon KlenkTom SauerDominik SchumacherJonas HelmaEberhard KrauseMaria Cristina CardosoHeinrich LeonhardtChristian P R Hackenberger
Published in: Angewandte Chemie (International ed. in English) (2019)
We describe a new technique in protein synthesis that extends the existing repertoire of methods for protein modification: A chemoselective reaction that induces reactivity for a subsequent bioconjugation. An azide-modified building block reacts first with an ethynylphosphonite through a Staudinger-phosphonite reaction (SPhR) to give an ethynylphosphonamidate. The resulting electron-deficient triple bond subsequently undergoes a cysteine-selective reaction with proteins or antibodies. We demonstrate that ethynylphosphonamidates display excellent cysteine-selective reactivity combined with superior stability of the thiol adducts, when compared to classical maleimide linkages. This turns our technique into a versatile and powerful tool for the facile construction of stable functional protein conjugates.
Keyphrases
  • fluorescent probe
  • amino acid
  • living cells
  • electron transfer
  • small molecule
  • highly efficient
  • wild type