Publication | Closed Access
Native Chemical Ligation through in Situ O to S Acyl Shift
140
Citations
18
References
2004
Year
Bioorganic ChemistryChemical TransformationPeptide EngineeringThioester PeptidesMolecular BiologyOrganic ChemistryPeptide SciencePeptide TherapeuticsChemical BiologyNative Chemical LigationNative Amide BondBiochemistryBiocatalysisDiversity-oriented SynthesisS Acyl ShiftBiomolecular EngineeringFmoc ChemistryAlkene MetathesisNatural SciencesPeptide LibraryPeptide TherapeuticPeptide SynthesisProtein EngineeringMedicineSynthetic ChemistrySitu O
[reaction: see text] A novel strategy to generate thioester peptides compatible with Fmoc chemistry is presented. Peptide-C(alpha)oxy-(2-mercapto-1-carboxyamide)ethyl ester undergoes an O to S acyl shift during ligation and the newly formed thioester intermediate reacts with an N-terminal cysteine fragment generating a product with native amide bond at the ligation site.
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