Publication | Closed Access
Catalytic Dehydrative Peptide Synthesis with <i>gem</i>-Diboronic Acids
69
Citations
53
References
2019
Year
Arylboronic AcidsEngineeringBiochemistryNatural SciencesPeptide EngineeringPeptide SynthesisOrganic ChemistryPeptide ScienceCatalysisChemistryGem-diboronic AcidsAlkane-gem-diboronic AcidsAsymmetric CatalysisBiomolecular Engineering
Alkane-gem-diboronic acids have emerged as versatile organoboron catalysts for dehydrative amidation of α-amino acids. A phenol-substituted multiboron catalyst with a B–C–B structure outperformed simple arylboronic acids in the condensation of α-amino acids with suppressed epimerization of electrophiles. gem-diboronic acid catalysis were compatible with various O, N, and S-functionalized α-amino acids bearing N-protecting groups including common carbamates used in peptide synthesis (Boc, Cbz, Fmoc). N-trifluoroacetyl protection enabled an unprecedented catalytic dehydrative peptide synthesis at room temperature. Preliminary mechanistic studies revealed carboxylate-binding nature of gem-diboronic acids, orthogonal to the activation of carboxylic acids by arylboronic acids. The distinctive reactivity of the gem-diboronic acids would open prospects for mild catalytic peptide condensation.
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