Literature DB >> 2807729

Use of the Npys thiol protection in solid phase peptide synthesis. Application to direct peptide-protein conjugation through cysteine residues.

F Albericio1, D Andreu, E Giralt, C Navalpotro, E Pedroso, B Ponsati, M Ruiz-Gayo.   

Abstract

The protection of the thiol function of cysteine with the 3-nitro-2-pyridylsulfenyl (Npys) group has been successfully applied in the solid phase synthesis of nine peptides. A reexamination of the chemical stability of the protecting group has shown that, while Npys is essentially suitable for standard Boc/benzyl synthesis conditions, it is inadequate for the Fmoc strategy. Its proven stability to "high" HF acidolysis can not be extended to "low-high" conditions without significant thiol deprotection. On the other hand, the Npys group is quite compatible with standard photolytical cleavage conditions. The stability of Npys to HF and its thiol-activating character allow its application in peptide-carrier protein conjugation reactions by specific coupling through cysteine residues in the peptide.

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Year:  1989        PMID: 2807729     DOI: 10.1111/j.1399-3011.1989.tb01500.x

Source DB:  PubMed          Journal:  Int J Pept Protein Res        ISSN: 0367-8377


  3 in total

1.  Studies on deprotection of cysteine and selenocysteine side-chain protecting groups.

Authors:  Katharine M Harris; Stevenson Flemer; Robert J Hondal
Journal:  J Pept Sci       Date:  2007-02       Impact factor: 1.905

2.  Fmoc Solid Phase Peptide Synthesis of Oxytocin and Analogues.

Authors:  Thomas Kremsmayr; Markus Muttenthaler
Journal:  Methods Mol Biol       Date:  2022

3.  The maize abscisic acid-responsive protein Rab17 is located in the nucleus and interacts with nuclear localization signals.

Authors:  A Goday; A B Jensen; F A Culiáñez-Macià; M Mar Albà; M Figueras; J Serratosa; M Torrent; M Pagès
Journal:  Plant Cell       Date:  1994-03       Impact factor: 11.277

  3 in total

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