Cell-Free Synthesis of Selenoproteins in High Yield and Purity for Selective Protein Tagging
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Welegedara, Adarshi
Maleckis, Ansis
Bandara, Ruchira
Mahawaththa, Mithun
Herath, Iresha Dilhani
Tan, Yi Jiun
Giannoulis, Angeliki
Goldfarb, Daniella
Otting, Gottfried
Huber, Thomas
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Wiley
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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.
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Chembiochem : a European journal of chemical biology
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