Publication | Closed Access
Scandium(<scp>iii</scp>) triflate-promoted serine/threonine-selective peptide bond cleavage
24
Citations
34
References
2017
Year
BiochemistryPeptide BondsProtein FoldingNatural SciencesPeptide LibraryPeptide EngineeringMolecular BiologyPeptide TherapeuticPeptide SynthesisProtein MisfoldingPeptide SciencePeptide TherapeuticsModified PeptideSite-selective HydrolysisAnalytical UltracentrifugationChemical BiologyMedicineStructural Biology
The site-selective cleavage of peptide bonds is an important chemical modification that is useful not only for the structural determination of peptides, but also as an artificial modulator of peptide/protein function and properties. Here we report site-selective hydrolysis of peptide bonds at the Ser and Thr positions with a high conversion yield. This chemical cleavage relies on Sc(iii)-promoted N,O-acyl rearrangement and subsequent hydrolysis. The method is applicable to a broad scope of polypeptides with various functional groups, including a post-translationally modified peptide that is unsuitable for enzymatic hydrolysis. The system was further extended to site-selective cleavage of a native protein, Aβ1-42, which is closely related to the onset of Alzheimer's disease.
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