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Cell-Free Synthesis of Selenoproteins in High Yield and Purity for Selective Protein Tagging.

Adarshi P WelegedaraAnsis MaleckisRuchira BandaraMithun C MahawaththaIresha Dilhani HerathYi Jiun TanAngeliki GiannoulisDaniella GoldfarbGottfried OttingThomas Huber
Published in: Chembiochem : a European journal of chemical biology (2021)
The selenol group of selenocysteine is much more nucleophilic than the thiol group of cysteine. Selenocysteine residues in proteins thus offer reactive points for rapid post-translational modification. Herein, we show that selenoproteins can be expressed in high yield and purity by cell-free protein synthesis by global substitution of cysteine by selenocysteine. Complete alkylation of solvent-exposed selenocysteine residues was achieved in 10 minutes with 4-chloromethylene dipicolinic acid (4Cl-MDPA) under conditions that left cysteine residues unchanged even after overnight incubation. GdIII -GdIII distances measured by double electron-electron resonance (DEER) experiments of maltose binding protein (MBP) containing two selenocysteine residues tagged with 4Cl-MDPA-GdIII were indistinguishable from GdIII -GdIII distances measured of MBP containing cysteine reacted with 4Br-MDPA tags.
Keyphrases
  • cell free
  • fluorescent probe
  • binding protein
  • living cells
  • circulating tumor
  • loop mediated isothermal amplification