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Rational Tuning of Fluorobenzene Probes for Cysteine-Selective Protein Modification.

Ahmed M EmbabySanne SchoffelenChristian KofoedMorten MeldalFrederik Diness
Published in: Angewandte Chemie (International ed. in English) (2018)
Fluorobenzene probes for protein profiling through selective cysteine labeling have been developed by rational reactivity tuning. Tuning was achieved by selecting an electron-withdrawing para substituent in combination with variation of the number of fluorine substituents. Optimized probes chemoselectively arylated cysteine residues in proteins under aqueous conditions. Probes linked to azide, biotin, or a fluorophore were applicable to labeling of eGFP and albumin. Selective inhibition of cysteine proteases was also demonstrated with the probes. Additionally, probes were tuned for site-selective labeling of cysteine residues and for activity-based protein profiling in cell lysates.
Keyphrases
  • living cells
  • fluorescent probe
  • small molecule
  • single molecule
  • fluorescence imaging
  • protein protein
  • stem cells
  • nucleic acid
  • binding protein
  • computed tomography
  • photodynamic therapy
  • pet ct