Reaction Mechanism and Kinetics of the Traceless Staudinger Ligation
- 20 June 2006
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 128 (27) , 8820-8828
- https://doi.org/10.1021/ja060484k
Abstract
The traceless Staudinger ligation enables the formation of an amide bond between a phosphinothioester (or phosphinoester) and an azide without the incorporation of residual atoms. Here, the coupling of peptides by this reaction was characterized in detail. Experiments with [18O]H2O indicated that the reaction mediated by (diphenylphosphino)methanethiol proceeded by S→N acyl transfer of the iminophosphorane intermediate to form an amidophosphonium salt, rather than by an aza-Wittig reaction and subsequent hydrolysis of the resulting thioimidate. A continuous 13C NMR-based assay revealed that the rate-determining step in the Staudinger ligation of glycyl residues mediated by (diphenylphosphino)methanethiol was the formation of the initial phosphazide intermediate. Less efficacious coupling reagents and reaction conditions led to the accumulation of an amine byproduct (which resulted from a Staudinger reduction) or phosphonamide byproduct (which resulted from an aza-Wittig reaction). The Staudinger ligation mediated by (diphenylphosphino)methanethiol proceeded with a second-order rate constant (7.7 × 10-3 M-1 s-1) and yield (95%) that was unchanged by the addition of exogenous nucleophiles. Ligations mediated by phosphinoalcohols had lower rate constants or less chemoselectivity. Accordingly, (diphenylphosphino)methanethiol was judged to be the most efficacious known reagent for effecting the traceless Staudinger ligation.Keywords
This publication has 27 references indexed in Scilit:
- A new drug-release method using the Staudinger ligationBioorganic & Medicinal Chemistry Letters, 2006
- Chemical Synthesis of ProteinsAnnual Review of Biophysics, 2005
- Chemical remodelling of cell surfaces in living animalsNature, 2004
- The Staudinger Ligation—A Gift to Chemical BiologyAngewandte Chemie International Edition in English, 2004
- Electric Current through a Molecular Rod—Relevance of the Position of the Anchor GroupsAngewandte Chemie International Edition in English, 2003
- Total chemical synthesis of enzymesJournal of Peptide Science, 2003
- Staudinger Ligation of α-Azido Acids Retains StereochemistryThe Journal of Organic Chemistry, 2002
- Synthesis of Native Proteins by Chemical LigationAnnual Review of Biochemistry, 2000
- A Fossil Snake with LimbsScience, 2000
- On the Reaction of Acyl Chlorides and Carboxylic Anhydrides with PhosphazenesThe Journal of Organic Chemistry, 1996