Site-selective S-gem -difluoroallylation of unprotected peptides with 3,3-difluoroallyl sulfonium salts

Bench-stable 3,3-difluoroallyl sulfonium salts (DFASs), featuring tunable activity and their editable C-β and -difluoroallyl group, proved to be versatile fluoroalkylating reagents for site-selective -difluoroallylation of cysteine residues in unprotected peptides. The reaction proceeds with high ef...

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Veröffentlicht in:Chemical science (Cambridge) 2024-07, Vol.15 (26), p.10002-10009
Hauptverfasser: Ren, Jin-Xiu, Zhou, Minqi, Feng, Xiao-Tian, Zhao, Hai-Yang, Fu, Xia-Ping, Zhang, Xingang
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Sprache:eng
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Zusammenfassung:Bench-stable 3,3-difluoroallyl sulfonium salts (DFASs), featuring tunable activity and their editable C-β and -difluoroallyl group, proved to be versatile fluoroalkylating reagents for site-selective -difluoroallylation of cysteine residues in unprotected peptides. The reaction proceeds with high efficiency under mild conditions (ambient temperature and aqueous and weak basic conditions). Various protected/unprotected peptides, especially bioactive peptides, are site-selectively -difluoroallylated. The newly added -difluoroallyl group and other functional groups derived from C-β of DFASs are poised for ligation with bio-functional groups through click and radical chemistry. This stepwise "doubly orthogonal" modification of peptides enables the construction of bioconjugates with enhanced complexity and functionality. This proof of principle is successfully applied to construct a peptide-saccharide-biotin chimeric bioconjugate, indicating its great potential application in medicinal chemistry and chemical biology.
ISSN:2041-6520
2041-6539
DOI:10.1039/d4sc02681k