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Optimized syntheses of Fmoc azido amino acids for the preparation of azidopeptides

The rise of CuI‐catalyzed click chemistry has initiated an increased demand for azido and alkyne derivatives of amino acid as precursors for the synthesis of clicked peptides. However, the use of azido and alkyne amino acids in peptide chemistry is complicated by their high cost. For this reason, we...

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Autores principales: Pícha, Jan, Buděšínský, Miloš, Macháčková, Kateřina, Collinsová, Michaela, Jiráček, Jiří
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5347871/
https://www.ncbi.nlm.nih.gov/pubmed/28120383
http://dx.doi.org/10.1002/psc.2968
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author Pícha, Jan
Buděšínský, Miloš
Macháčková, Kateřina
Collinsová, Michaela
Jiráček, Jiří
author_facet Pícha, Jan
Buděšínský, Miloš
Macháčková, Kateřina
Collinsová, Michaela
Jiráček, Jiří
author_sort Pícha, Jan
collection PubMed
description The rise of CuI‐catalyzed click chemistry has initiated an increased demand for azido and alkyne derivatives of amino acid as precursors for the synthesis of clicked peptides. However, the use of azido and alkyne amino acids in peptide chemistry is complicated by their high cost. For this reason, we investigated the possibility of the in‐house preparation of a set of five Fmoc azido amino acids: β‐azido l‐alanine and d‐alanine, γ‐azido l‐homoalanine, δ‐azido l‐ornithine and ω‐azido l‐lysine. We investigated several reaction pathways described in the literature, suggested several improvements and proposed several alternative routes for the synthesis of these compounds in high purity. Here, we demonstrate that multigram quantities of these Fmoc azido amino acids can be prepared within a week or two and at user‐friendly costs. We also incorporated these azido amino acids into several model tripeptides, and we observed the formation of a new elimination product of the azido moiety upon conditions of prolonged couplings with 2‐(1H‐benzotriazol‐1‐yl)‐1,1,3,3‐tetramethyluronium hexafluorophosphate/DIPEA. We hope that our detailed synthetic protocols will inspire some peptide chemists to prepare these Fmoc azido acids in their laboratories and will assist them in avoiding the too extensive costs of azidopeptide syntheses. Experimental procedures and/or analytical data for compounds 3–5, 20, 25, 26, 30 and 43–47 are provided in the supporting information. © 2017 The Authors Journal of Peptide Science published by European Peptide Society and John Wiley & Sons Ltd.
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spelling pubmed-53478712017-03-23 Optimized syntheses of Fmoc azido amino acids for the preparation of azidopeptides Pícha, Jan Buděšínský, Miloš Macháčková, Kateřina Collinsová, Michaela Jiráček, Jiří J Pept Sci Research Articles The rise of CuI‐catalyzed click chemistry has initiated an increased demand for azido and alkyne derivatives of amino acid as precursors for the synthesis of clicked peptides. However, the use of azido and alkyne amino acids in peptide chemistry is complicated by their high cost. For this reason, we investigated the possibility of the in‐house preparation of a set of five Fmoc azido amino acids: β‐azido l‐alanine and d‐alanine, γ‐azido l‐homoalanine, δ‐azido l‐ornithine and ω‐azido l‐lysine. We investigated several reaction pathways described in the literature, suggested several improvements and proposed several alternative routes for the synthesis of these compounds in high purity. Here, we demonstrate that multigram quantities of these Fmoc azido amino acids can be prepared within a week or two and at user‐friendly costs. We also incorporated these azido amino acids into several model tripeptides, and we observed the formation of a new elimination product of the azido moiety upon conditions of prolonged couplings with 2‐(1H‐benzotriazol‐1‐yl)‐1,1,3,3‐tetramethyluronium hexafluorophosphate/DIPEA. We hope that our detailed synthetic protocols will inspire some peptide chemists to prepare these Fmoc azido acids in their laboratories and will assist them in avoiding the too extensive costs of azidopeptide syntheses. Experimental procedures and/or analytical data for compounds 3–5, 20, 25, 26, 30 and 43–47 are provided in the supporting information. © 2017 The Authors Journal of Peptide Science published by European Peptide Society and John Wiley & Sons Ltd. John Wiley and Sons Inc. 2017-01-25 2017-03 /pmc/articles/PMC5347871/ /pubmed/28120383 http://dx.doi.org/10.1002/psc.2968 Text en © 2017 The Authors Journal of Peptide Science published by European Peptide Society and John Wiley & Sons Ltd This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Pícha, Jan
Buděšínský, Miloš
Macháčková, Kateřina
Collinsová, Michaela
Jiráček, Jiří
Optimized syntheses of Fmoc azido amino acids for the preparation of azidopeptides
title Optimized syntheses of Fmoc azido amino acids for the preparation of azidopeptides
title_full Optimized syntheses of Fmoc azido amino acids for the preparation of azidopeptides
title_fullStr Optimized syntheses of Fmoc azido amino acids for the preparation of azidopeptides
title_full_unstemmed Optimized syntheses of Fmoc azido amino acids for the preparation of azidopeptides
title_short Optimized syntheses of Fmoc azido amino acids for the preparation of azidopeptides
title_sort optimized syntheses of fmoc azido amino acids for the preparation of azidopeptides
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5347871/
https://www.ncbi.nlm.nih.gov/pubmed/28120383
http://dx.doi.org/10.1002/psc.2968
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