Publication | Closed Access
Cysteine/Penicillamine Ligation Independent of Terminal Steric Demands for Chemical Protein Synthesis
14
Citations
25
References
2020
Year
Terminal Steric DemandsUnprotected PeptidesPeptide EngineeringMolecular BiologyPeptide SciencePeptide TherapeuticsChemical Protein SynthesisChemical BiologyProtein SynthesisStructure-function Enzyme KineticsChemical LigationBiochemistryDiversity-oriented SynthesisBioconjugationCysteine/penicillamine Ligation IndependentProtein BiosynthesisBiomolecular EngineeringNatural SciencesPeptide LibraryPeptide SynthesisMedicine
Abstract The chemical ligation of two unprotected peptides to generate a natural peptidic linkage specifically at the C‐ and N‐termini is a desirable goal in chemical protein synthesis but is challenging because it demands high reactivity and selectivity (chemo‐, regio‐, and stereoselectivity). We report an operationally simple and highly effective chemical peptide ligation involving the ligation of peptides with C‐terminal salicylaldehyde esters to peptides with N‐terminal cysteine/penicillamine. The notable features of this method include its tolerance of steric hinderance from the side groups on either ligating terminus, thereby allowing flexible disconnection at sites that are otherwise difficult to functionalize. In addition, this method can be expanded to selective desulfurization and one‐pot ligation‐desulfurization reactions. The effectiveness of this method was demonstrated by the synthesis of VISTA (216‐311), PD‐1 (192‐288) and Eglin C.
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