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Head‐to‐tail cyclization of side chain‐protected linear peptides to recapitulate genetically‐encoded cyclized peptides

Genetically‐encoded cyclic peptide libraries allow rapid in vivo screens for inhibitors of any target protein of interest. In particular, the Split Intein Circular Ligation of Protein and Peptides (SICLOPPS) system exploits spontaneous protein splicing of inteins to produce intracellular cyclic pept...

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Autores principales: Bouayad‐Gervais, Samir, St‐Cyr, Daniel J., Courcelles, Mathieu, Bonneil, Éric, Gohard, Florence H., Thibault, Pierre, Earnshaw, William C., Tyers, Mike
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9286623/
https://www.ncbi.nlm.nih.gov/pubmed/35864841
http://dx.doi.org/10.1002/pep2.24254
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author Bouayad‐Gervais, Samir
St‐Cyr, Daniel J.
Courcelles, Mathieu
Bonneil, Éric
Gohard, Florence H.
Thibault, Pierre
Earnshaw, William C.
Tyers, Mike
author_facet Bouayad‐Gervais, Samir
St‐Cyr, Daniel J.
Courcelles, Mathieu
Bonneil, Éric
Gohard, Florence H.
Thibault, Pierre
Earnshaw, William C.
Tyers, Mike
author_sort Bouayad‐Gervais, Samir
collection PubMed
description Genetically‐encoded cyclic peptide libraries allow rapid in vivo screens for inhibitors of any target protein of interest. In particular, the Split Intein Circular Ligation of Protein and Peptides (SICLOPPS) system exploits spontaneous protein splicing of inteins to produce intracellular cyclic peptides. A previous SICLOPPS screen against Aurora B kinase, which plays a critical role during chromosome segregation, identified several candidate inhibitors that we sought to recapitulate by chemical synthesis. We describe the syntheses of cyclic peptide hits and analogs via solution‐phase macrocyclization of side chain‐protected linear peptides obtained from standard solid‐phase peptide synthesis. Cyclic peptide targets, including cyclo‐[CTWAR], were designed to match both the variable portions and conserved cysteine residue of their genetically‐encoded counterparts. Synthetic products were characterized by tandem high‐resolution mass spectrometry to analyze a combination of exact mass, isotopic pattern, and collisional dissociation‐induced fragmentation pattern. The latter analyses facilitated the distinction between targets and oligomeric side products, and served to confirm peptidic sequences in a manner that can be readily extended to analyses of complex biological samples. This alternative chemical synthesis approach for cyclic peptides allows cost‐effective validation and facile chemical elaboration of hit candidates from SICLOPPS screens.
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spelling pubmed-92866232022-07-19 Head‐to‐tail cyclization of side chain‐protected linear peptides to recapitulate genetically‐encoded cyclized peptides Bouayad‐Gervais, Samir St‐Cyr, Daniel J. Courcelles, Mathieu Bonneil, Éric Gohard, Florence H. Thibault, Pierre Earnshaw, William C. Tyers, Mike Pept Sci (Hoboken) Articles Genetically‐encoded cyclic peptide libraries allow rapid in vivo screens for inhibitors of any target protein of interest. In particular, the Split Intein Circular Ligation of Protein and Peptides (SICLOPPS) system exploits spontaneous protein splicing of inteins to produce intracellular cyclic peptides. A previous SICLOPPS screen against Aurora B kinase, which plays a critical role during chromosome segregation, identified several candidate inhibitors that we sought to recapitulate by chemical synthesis. We describe the syntheses of cyclic peptide hits and analogs via solution‐phase macrocyclization of side chain‐protected linear peptides obtained from standard solid‐phase peptide synthesis. Cyclic peptide targets, including cyclo‐[CTWAR], were designed to match both the variable portions and conserved cysteine residue of their genetically‐encoded counterparts. Synthetic products were characterized by tandem high‐resolution mass spectrometry to analyze a combination of exact mass, isotopic pattern, and collisional dissociation‐induced fragmentation pattern. The latter analyses facilitated the distinction between targets and oligomeric side products, and served to confirm peptidic sequences in a manner that can be readily extended to analyses of complex biological samples. This alternative chemical synthesis approach for cyclic peptides allows cost‐effective validation and facile chemical elaboration of hit candidates from SICLOPPS screens. John Wiley & Sons, Inc. 2022-01-06 2022-05 /pmc/articles/PMC9286623/ /pubmed/35864841 http://dx.doi.org/10.1002/pep2.24254 Text en © 2022 The Authors. Peptide Science published by Wiley Periodicals LLC. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Bouayad‐Gervais, Samir
St‐Cyr, Daniel J.
Courcelles, Mathieu
Bonneil, Éric
Gohard, Florence H.
Thibault, Pierre
Earnshaw, William C.
Tyers, Mike
Head‐to‐tail cyclization of side chain‐protected linear peptides to recapitulate genetically‐encoded cyclized peptides
title Head‐to‐tail cyclization of side chain‐protected linear peptides to recapitulate genetically‐encoded cyclized peptides
title_full Head‐to‐tail cyclization of side chain‐protected linear peptides to recapitulate genetically‐encoded cyclized peptides
title_fullStr Head‐to‐tail cyclization of side chain‐protected linear peptides to recapitulate genetically‐encoded cyclized peptides
title_full_unstemmed Head‐to‐tail cyclization of side chain‐protected linear peptides to recapitulate genetically‐encoded cyclized peptides
title_short Head‐to‐tail cyclization of side chain‐protected linear peptides to recapitulate genetically‐encoded cyclized peptides
title_sort head‐to‐tail cyclization of side chain‐protected linear peptides to recapitulate genetically‐encoded cyclized peptides
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9286623/
https://www.ncbi.nlm.nih.gov/pubmed/35864841
http://dx.doi.org/10.1002/pep2.24254
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