Vinyl sulfonamide synthesis for irreversible tethering via a novel α-selenoether protection strategy
File(s)Revised Manuscript without tracked changes.docx (1.44 MB)
Accepted version
Author(s)
Craven, Gregory
Affron, Dominic
Raymond, Philip
Mann, David
Armstrong, Alan
Type
Journal Article
Abstract
Vinyl sulfonamides are valuable electrophiles for targeted protein modification and inhibition. We describe a novel approach to the synthesis of terminal vinyl sulfonamides which uses mild oxidative conditions to induce elimination of an α-selenoether masking group. The method complements traditional synthetic approaches and typically yields vinyl sulfonamides in high purity after aqueous work-up without requiring column chromatography of the final electrophilic product. The methodology is applied to the synthesis of covalent fragments for use in irreversible protein tethering and crucially enables the attachment of diverse fragments to the vinyl sulfonamide warhead via a chemical linker. Using thymidylate synthase as a model system, ethylene glycol is identified as an effective linker for irreversible protein tethering.
Date Issued
2019-01-01
Date Acceptance
2018-12-11
Citation
MedChemComm, 2019, 10, pp.158-163
ISSN
2040-2503
Publisher
Royal Society of Chemistry
Start Page
158
End Page
163
Journal / Book Title
MedChemComm
Volume
10
Copyright Statement
© The Royal Society of Chemistry 2019
Subjects
Science & Technology
Life Sciences & Biomedicine
Biochemistry & Molecular Biology
Chemistry, Medicinal
Pharmacology & Pharmacy
COVALENT INHIBITORS
DISCOVERY
DESIGN
REACTIVITY
FRAGMENTS
PROTEASE
KINASE
SITE
0304 Medicinal And Biomolecular Chemistry
0305 Organic Chemistry
1115 Pharmacology And Pharmaceutical Sciences
Publication Status
Published
Date Publish Online
2018-12-13