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Redox-based reagents for chemoselective methionine bioconjugation.

Shixian LinXiaoyu YangShang JiaAmy M WeeksMichael HornsbyPeter S LeeRita V NichiporukAnthony T IavaroneJames A WellsF Dean TosteChristopher J Chang
Published in: Science (New York, N.Y.) (2017)
Cysteine can be specifically functionalized by a myriad of acid-base conjugation strategies for applications ranging from probing protein function to antibody-drug conjugates and proteomics. In contrast, selective ligation to the other sulfur-containing amino acid, methionine, has been precluded by its intrinsically weaker nucleophilicity. Here, we report a strategy for chemoselective methionine bioconjugation through redox reactivity, using oxaziridine-based reagents to achieve highly selective, rapid, and robust methionine labeling under a range of biocompatible reaction conditions. We highlight the broad utility of this conjugation method to enable precise addition of payloads to proteins, synthesis of antibody-drug conjugates, and identification of hyperreactive methionine residues in whole proteomes.
Keyphrases
  • amino acid
  • magnetic resonance
  • mass spectrometry
  • cancer therapy
  • magnetic resonance imaging
  • computed tomography
  • quantum dots
  • small molecule
  • fluorescent probe
  • binding protein