Diversity-oriented synthesis of peptide-boronic acids by a versatile building-block approach

A new strategy for the synthesis of peptide-boronic acids (PBAs) is presented. 20 Fmoc-protected natural amino acids with orthogonal side-chain protection were straightforwardly converted into their corresponding boron analogues in three simple steps. Subsequent immobilisation on commercially availa...

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Veröffentlicht in:Chemical science (Cambridge) 2020-08, Vol.11 (36), p.9898-993
Hauptverfasser: Hinkes, Stefan P. A, Kämmerer, Severin, Klein, Christian D. P
Format: Artikel
Sprache:eng
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Zusammenfassung:A new strategy for the synthesis of peptide-boronic acids (PBAs) is presented. 20 Fmoc-protected natural amino acids with orthogonal side-chain protection were straightforwardly converted into their corresponding boron analogues in three simple steps. Subsequent immobilisation on commercially available 1-glycerol polystyrene resin and on-resin transformations yielded a diversity of sequences in high purity. The strategy eliminates various synthetic obstacles such as multi-step routes, low yields, and inseparable impurities. The described method comprises great potential to be implemented in automated combinatorial approaches by markedly facilitating the access to a variety of PBAs. The coupling of amino acids or other building blocks with α-aminoboronates allows the creation of hybrid molecules with significant potential in various scientific disciplines, such as medicinal chemistry, structural biology, and materials science. Decarboxylative borylation and monophasic transesterification yields Fmoc-α-aminoboronates for solid-phase peptide synthesis.
ISSN:2041-6520
2041-6539
DOI:10.1039/d0sc03999c