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Conformational interplay in hybrid peptide–helical aromatic foldamer macrocycles

Macrocyclic peptides are an important class of bioactive substances. When inserting an aromatic foldamer segment in a macrocyclic peptide, the strong folding propensity of the former may influence the conformation and alter the properties of the latter. Such an insertion is relevant because some fol...

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Autores principales: Dengler, Sebastian, Mandal, Pradeep K., Allmendinger, Lars, Douat, Céline, Huc, Ivan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8386670/
https://www.ncbi.nlm.nih.gov/pubmed/34522297
http://dx.doi.org/10.1039/d1sc03640h
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author Dengler, Sebastian
Mandal, Pradeep K.
Allmendinger, Lars
Douat, Céline
Huc, Ivan
author_facet Dengler, Sebastian
Mandal, Pradeep K.
Allmendinger, Lars
Douat, Céline
Huc, Ivan
author_sort Dengler, Sebastian
collection PubMed
description Macrocyclic peptides are an important class of bioactive substances. When inserting an aromatic foldamer segment in a macrocyclic peptide, the strong folding propensity of the former may influence the conformation and alter the properties of the latter. Such an insertion is relevant because some foldamer–peptide hybrids have recently been shown to be tolerated by the ribosome, prior to forming macrocycles, and can thus be produced using an in vitro translation system. We have investigated the interplay of peptide and foldamer conformations in such hybrid macrocycles. We show that foldamer helical folding always prevails and stands as a viable means to stretch, i.e. unfold, peptides in a solvent dependent manner. Conversely, the peptide systematically has a reciprocal influence and gives rise to strong foldamer helix handedness bias as well as foldamer helix stabilisation. The hybrid macrocycles also show resistance towards proteolytic degradation.
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spelling pubmed-83866702021-09-13 Conformational interplay in hybrid peptide–helical aromatic foldamer macrocycles Dengler, Sebastian Mandal, Pradeep K. Allmendinger, Lars Douat, Céline Huc, Ivan Chem Sci Chemistry Macrocyclic peptides are an important class of bioactive substances. When inserting an aromatic foldamer segment in a macrocyclic peptide, the strong folding propensity of the former may influence the conformation and alter the properties of the latter. Such an insertion is relevant because some foldamer–peptide hybrids have recently been shown to be tolerated by the ribosome, prior to forming macrocycles, and can thus be produced using an in vitro translation system. We have investigated the interplay of peptide and foldamer conformations in such hybrid macrocycles. We show that foldamer helical folding always prevails and stands as a viable means to stretch, i.e. unfold, peptides in a solvent dependent manner. Conversely, the peptide systematically has a reciprocal influence and gives rise to strong foldamer helix handedness bias as well as foldamer helix stabilisation. The hybrid macrocycles also show resistance towards proteolytic degradation. The Royal Society of Chemistry 2021-07-27 /pmc/articles/PMC8386670/ /pubmed/34522297 http://dx.doi.org/10.1039/d1sc03640h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Dengler, Sebastian
Mandal, Pradeep K.
Allmendinger, Lars
Douat, Céline
Huc, Ivan
Conformational interplay in hybrid peptide–helical aromatic foldamer macrocycles
title Conformational interplay in hybrid peptide–helical aromatic foldamer macrocycles
title_full Conformational interplay in hybrid peptide–helical aromatic foldamer macrocycles
title_fullStr Conformational interplay in hybrid peptide–helical aromatic foldamer macrocycles
title_full_unstemmed Conformational interplay in hybrid peptide–helical aromatic foldamer macrocycles
title_short Conformational interplay in hybrid peptide–helical aromatic foldamer macrocycles
title_sort conformational interplay in hybrid peptide–helical aromatic foldamer macrocycles
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8386670/
https://www.ncbi.nlm.nih.gov/pubmed/34522297
http://dx.doi.org/10.1039/d1sc03640h
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