2006
DOI: 10.1021/ja060484k
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Reaction Mechanism and Kinetics of the Traceless Staudinger Ligation

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 [(18)O]H(2)O 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… Show more

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Cited by 162 publications
(203 citation statements)
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“…This Ala + Gly coupling was found to proceed with a second-order rate constant of k 2 = 7.4 × 10 −3 M −1 s −1 in water. This rate constant, which is similar to that reported previously for a Gly + Gly coupling mediated by phosphinothiol 1 in DMF/D 2 O (6:1) (k 2 = 7.7 × 10 −3 M −1 s −1 ), 17 corresponds to t 1/2 = 10 min for a reaction with 0.16 M azide.…”
Section: Resultssupporting
confidence: 89%
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“…This Ala + Gly coupling was found to proceed with a second-order rate constant of k 2 = 7.4 × 10 −3 M −1 s −1 in water. This rate constant, which is similar to that reported previously for a Gly + Gly coupling mediated by phosphinothiol 1 in DMF/D 2 O (6:1) (k 2 = 7.7 × 10 −3 M −1 s −1 ), 17 corresponds to t 1/2 = 10 min for a reaction with 0.16 M azide.…”
Section: Resultssupporting
confidence: 89%
“…The utility of phosphinothiol 9 was determined by monitoring its ability to mediate a traceless Staudinger ligation in water with a 13 C NMR assay developed in our laboratory. 17 The major product of the reaction of phosphinothioester 14 with azide 15 was the amine byproduct, glycinamide, which is formed by the reduction of the azido group. The yield of the desired product, amide 16, was strongly dependent on the pH of the reaction mixture, increasing at high pH (Figure 1).…”
Section: Resultsmentioning
confidence: 99%
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