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Conformational Switching of a Foldamer in a Multicomponent System by pH-Filtered Selection between Competing Noncovalent Interactions

[Image: see text] Biomolecular systems are able to respond to their chemical environment through reversible, selective, noncovalent intermolecular interactions. Typically, these interactions induce conformational changes that initiate a signaling cascade, allowing the regulation of biochemical pathw...

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Autores principales: Brioche, Julien, Pike, Sarah J., Tshepelevitsh, Sofja, Leito, Ivo, Morris, Gareth A., Webb, Simon J., Clayden, Jonathan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2015
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4520694/
https://www.ncbi.nlm.nih.gov/pubmed/25915163
http://dx.doi.org/10.1021/jacs.5b03284
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author Brioche, Julien
Pike, Sarah J.
Tshepelevitsh, Sofja
Leito, Ivo
Morris, Gareth A.
Webb, Simon J.
Clayden, Jonathan
author_facet Brioche, Julien
Pike, Sarah J.
Tshepelevitsh, Sofja
Leito, Ivo
Morris, Gareth A.
Webb, Simon J.
Clayden, Jonathan
author_sort Brioche, Julien
collection PubMed
description [Image: see text] Biomolecular systems are able to respond to their chemical environment through reversible, selective, noncovalent intermolecular interactions. Typically, these interactions induce conformational changes that initiate a signaling cascade, allowing the regulation of biochemical pathways. In this work, we describe an artificial molecular system that mimics this ability to translate selective noncovalent interactions into reversible conformational changes. An achiral but helical foldamer carrying a basic binding site interacts selectively with the most acidic member of a suite of chiral ligands. As a consequence of this noncovalent interaction, a global absolute screw sense preference, detectable by (13)C NMR, is induced in the foldamer. Addition of base, or acid, to the mixture of ligands competitively modulates their interaction with the binding site, and reversibly switches the foldamer chain between its left and right-handed conformations. As a result, the foldamer–ligand mixture behaves as a biomimetic chemical system with emergent properties, functioning as a “proton-counting” molecular device capable of providing a tunable, pH-dependent conformational response to its environment.
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spelling pubmed-45206942015-08-01 Conformational Switching of a Foldamer in a Multicomponent System by pH-Filtered Selection between Competing Noncovalent Interactions Brioche, Julien Pike, Sarah J. Tshepelevitsh, Sofja Leito, Ivo Morris, Gareth A. Webb, Simon J. Clayden, Jonathan J Am Chem Soc [Image: see text] Biomolecular systems are able to respond to their chemical environment through reversible, selective, noncovalent intermolecular interactions. Typically, these interactions induce conformational changes that initiate a signaling cascade, allowing the regulation of biochemical pathways. In this work, we describe an artificial molecular system that mimics this ability to translate selective noncovalent interactions into reversible conformational changes. An achiral but helical foldamer carrying a basic binding site interacts selectively with the most acidic member of a suite of chiral ligands. As a consequence of this noncovalent interaction, a global absolute screw sense preference, detectable by (13)C NMR, is induced in the foldamer. Addition of base, or acid, to the mixture of ligands competitively modulates their interaction with the binding site, and reversibly switches the foldamer chain between its left and right-handed conformations. As a result, the foldamer–ligand mixture behaves as a biomimetic chemical system with emergent properties, functioning as a “proton-counting” molecular device capable of providing a tunable, pH-dependent conformational response to its environment. American Chemical Society 2015-04-27 2015-05-27 /pmc/articles/PMC4520694/ /pubmed/25915163 http://dx.doi.org/10.1021/jacs.5b03284 Text en Copyright © 2015 American Chemical Society This is an open access article published under a Creative Commons Attribution (CC-BY) License (http://pubs.acs.org/page/policy/authorchoice_ccby_termsofuse.html) , which permits unrestricted use, distribution and reproduction in any medium, provided the author and source are cited.
spellingShingle Brioche, Julien
Pike, Sarah J.
Tshepelevitsh, Sofja
Leito, Ivo
Morris, Gareth A.
Webb, Simon J.
Clayden, Jonathan
Conformational Switching of a Foldamer in a Multicomponent System by pH-Filtered Selection between Competing Noncovalent Interactions
title Conformational Switching of a Foldamer in a Multicomponent System by pH-Filtered Selection between Competing Noncovalent Interactions
title_full Conformational Switching of a Foldamer in a Multicomponent System by pH-Filtered Selection between Competing Noncovalent Interactions
title_fullStr Conformational Switching of a Foldamer in a Multicomponent System by pH-Filtered Selection between Competing Noncovalent Interactions
title_full_unstemmed Conformational Switching of a Foldamer in a Multicomponent System by pH-Filtered Selection between Competing Noncovalent Interactions
title_short Conformational Switching of a Foldamer in a Multicomponent System by pH-Filtered Selection between Competing Noncovalent Interactions
title_sort conformational switching of a foldamer in a multicomponent system by ph-filtered selection between competing noncovalent interactions
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4520694/
https://www.ncbi.nlm.nih.gov/pubmed/25915163
http://dx.doi.org/10.1021/jacs.5b03284
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