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Fluorine NMR study of proline-rich sequences using fluoroprolines

Proline homopolymer motifs are found in many proteins; their peculiar conformational and dynamic properties are often directly involved in those proteins' functions. However, the dynamics of proline homopolymers is hard to study by NMR due to a lack of amide protons and small chemical shift dis...

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Autores principales: Sinnaeve, Davy, Ben Bouzayene, Abir, Ottoy, Emile, Hofman, Gert-Jan, Erdmann, Eva, Linclau, Bruno, Kuprov, Ilya, Martins, José C., Torbeev, Vladimir, Kieffer, Bruno
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Copernicus GmbH 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10539733/
https://www.ncbi.nlm.nih.gov/pubmed/37905223
http://dx.doi.org/10.5194/mr-2-795-2021
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author Sinnaeve, Davy
Ben Bouzayene, Abir
Ottoy, Emile
Hofman, Gert-Jan
Erdmann, Eva
Linclau, Bruno
Kuprov, Ilya
Martins, José C.
Torbeev, Vladimir
Kieffer, Bruno
author_facet Sinnaeve, Davy
Ben Bouzayene, Abir
Ottoy, Emile
Hofman, Gert-Jan
Erdmann, Eva
Linclau, Bruno
Kuprov, Ilya
Martins, José C.
Torbeev, Vladimir
Kieffer, Bruno
author_sort Sinnaeve, Davy
collection PubMed
description Proline homopolymer motifs are found in many proteins; their peculiar conformational and dynamic properties are often directly involved in those proteins' functions. However, the dynamics of proline homopolymers is hard to study by NMR due to a lack of amide protons and small chemical shift dispersion. Exploiting the spectroscopic properties of fluorinated prolines opens interesting perspectives to address these issues. Fluorinated prolines are already widely used in protein structure engineering – they introduce conformational and dynamical biases – but their use as [Formula: see text] F NMR reporters of proline conformation has not yet been explored. In this work, we look at model peptides where C [Formula: see text] -fluorinated prolines with opposite configurations of the chiral C [Formula: see text] centre have been introduced at two positions in distinct polyproline segments. By looking at the effects of swapping these (4 [Formula: see text] )-fluoroproline and (4 [Formula: see text] )-fluoroproline within the polyproline segments, we were able to separate the intrinsic conformational properties of the polyproline sequence from the conformational alterations instilled by fluorination. We assess the fluoroproline [Formula: see text] F relaxation properties, and we exploit the latter in elucidating binding kinetics to the SH3 (Src homology 3) domain.
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spelling pubmed-105397332023-10-30 Fluorine NMR study of proline-rich sequences using fluoroprolines Sinnaeve, Davy Ben Bouzayene, Abir Ottoy, Emile Hofman, Gert-Jan Erdmann, Eva Linclau, Bruno Kuprov, Ilya Martins, José C. Torbeev, Vladimir Kieffer, Bruno Magn Reson (Gott) Research Article Proline homopolymer motifs are found in many proteins; their peculiar conformational and dynamic properties are often directly involved in those proteins' functions. However, the dynamics of proline homopolymers is hard to study by NMR due to a lack of amide protons and small chemical shift dispersion. Exploiting the spectroscopic properties of fluorinated prolines opens interesting perspectives to address these issues. Fluorinated prolines are already widely used in protein structure engineering – they introduce conformational and dynamical biases – but their use as [Formula: see text] F NMR reporters of proline conformation has not yet been explored. In this work, we look at model peptides where C [Formula: see text] -fluorinated prolines with opposite configurations of the chiral C [Formula: see text] centre have been introduced at two positions in distinct polyproline segments. By looking at the effects of swapping these (4 [Formula: see text] )-fluoroproline and (4 [Formula: see text] )-fluoroproline within the polyproline segments, we were able to separate the intrinsic conformational properties of the polyproline sequence from the conformational alterations instilled by fluorination. We assess the fluoroproline [Formula: see text] F relaxation properties, and we exploit the latter in elucidating binding kinetics to the SH3 (Src homology 3) domain. Copernicus GmbH 2021-11-09 /pmc/articles/PMC10539733/ /pubmed/37905223 http://dx.doi.org/10.5194/mr-2-795-2021 Text en Copyright: © 2021 Davy Sinnaeve et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this licence, visit https://creativecommons.org/licenses/by/4.0/
spellingShingle Research Article
Sinnaeve, Davy
Ben Bouzayene, Abir
Ottoy, Emile
Hofman, Gert-Jan
Erdmann, Eva
Linclau, Bruno
Kuprov, Ilya
Martins, José C.
Torbeev, Vladimir
Kieffer, Bruno
Fluorine NMR study of proline-rich sequences using fluoroprolines
title Fluorine NMR study of proline-rich sequences using fluoroprolines
title_full Fluorine NMR study of proline-rich sequences using fluoroprolines
title_fullStr Fluorine NMR study of proline-rich sequences using fluoroprolines
title_full_unstemmed Fluorine NMR study of proline-rich sequences using fluoroprolines
title_short Fluorine NMR study of proline-rich sequences using fluoroprolines
title_sort fluorine nmr study of proline-rich sequences using fluoroprolines
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10539733/
https://www.ncbi.nlm.nih.gov/pubmed/37905223
http://dx.doi.org/10.5194/mr-2-795-2021
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