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Employing complementary spectroscopies to study the conformations of an epimeric pair of side-chain stapled peptides in aqueous solution

Understanding the conformational preferences of free ligands in solution is often necessary to rationalize structure–activity relationships in drug discovery. Herein, we examine the conformational behavior of an epimeric pair of side-chain stapled peptides that inhibit the FAD dependent amine oxidas...

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Autores principales: Bogaerts, Jonathan, Atilaw, Yoseph, Peintner, Stefan, Aerts, Roy, Kihlberg, Jan, Johannessen, Christian, Erdélyi, Máté
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/PMC8694311/
https://www.ncbi.nlm.nih.gov/pubmed/35424346
http://dx.doi.org/10.1039/d0ra10167b
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author Bogaerts, Jonathan
Atilaw, Yoseph
Peintner, Stefan
Aerts, Roy
Kihlberg, Jan
Johannessen, Christian
Erdélyi, Máté
author_facet Bogaerts, Jonathan
Atilaw, Yoseph
Peintner, Stefan
Aerts, Roy
Kihlberg, Jan
Johannessen, Christian
Erdélyi, Máté
author_sort Bogaerts, Jonathan
collection PubMed
description Understanding the conformational preferences of free ligands in solution is often necessary to rationalize structure–activity relationships in drug discovery. Herein, we examine the conformational behavior of an epimeric pair of side-chain stapled peptides that inhibit the FAD dependent amine oxidase lysine specific demethylase 1 (LSD1). The peptides differ only at a single stereocenter, but display a major difference in binding affinity. Their Raman optical activity (ROA) spectra are most likely dominated by the C-terminus, obscuring the analysis of the epimeric macrocycle. By employing NMR spectroscopy, we show a difference in conformational behavior between the two compounds and that the LSD1 bound conformation of the most potent compound is present to a measurable extent in aqueous solution. In addition, we illustrate that Molecular Dynamics (MD) simulations produce ensembles that include the most important solution conformations, but that it remains problematic to identify relevant conformations with no a priori knowledge from the large conformational pool. Furthermore, this work highlights the importance of understanding the scope and limitations of the available techniques for conducting conformational analyses. It also emphasizes the importance of conformational selection of a flexible ligand in molecular recognition.
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spelling pubmed-86943112022-04-13 Employing complementary spectroscopies to study the conformations of an epimeric pair of side-chain stapled peptides in aqueous solution Bogaerts, Jonathan Atilaw, Yoseph Peintner, Stefan Aerts, Roy Kihlberg, Jan Johannessen, Christian Erdélyi, Máté RSC Adv Chemistry Understanding the conformational preferences of free ligands in solution is often necessary to rationalize structure–activity relationships in drug discovery. Herein, we examine the conformational behavior of an epimeric pair of side-chain stapled peptides that inhibit the FAD dependent amine oxidase lysine specific demethylase 1 (LSD1). The peptides differ only at a single stereocenter, but display a major difference in binding affinity. Their Raman optical activity (ROA) spectra are most likely dominated by the C-terminus, obscuring the analysis of the epimeric macrocycle. By employing NMR spectroscopy, we show a difference in conformational behavior between the two compounds and that the LSD1 bound conformation of the most potent compound is present to a measurable extent in aqueous solution. In addition, we illustrate that Molecular Dynamics (MD) simulations produce ensembles that include the most important solution conformations, but that it remains problematic to identify relevant conformations with no a priori knowledge from the large conformational pool. Furthermore, this work highlights the importance of understanding the scope and limitations of the available techniques for conducting conformational analyses. It also emphasizes the importance of conformational selection of a flexible ligand in molecular recognition. The Royal Society of Chemistry 2021-01-20 /pmc/articles/PMC8694311/ /pubmed/35424346 http://dx.doi.org/10.1039/d0ra10167b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Bogaerts, Jonathan
Atilaw, Yoseph
Peintner, Stefan
Aerts, Roy
Kihlberg, Jan
Johannessen, Christian
Erdélyi, Máté
Employing complementary spectroscopies to study the conformations of an epimeric pair of side-chain stapled peptides in aqueous solution
title Employing complementary spectroscopies to study the conformations of an epimeric pair of side-chain stapled peptides in aqueous solution
title_full Employing complementary spectroscopies to study the conformations of an epimeric pair of side-chain stapled peptides in aqueous solution
title_fullStr Employing complementary spectroscopies to study the conformations of an epimeric pair of side-chain stapled peptides in aqueous solution
title_full_unstemmed Employing complementary spectroscopies to study the conformations of an epimeric pair of side-chain stapled peptides in aqueous solution
title_short Employing complementary spectroscopies to study the conformations of an epimeric pair of side-chain stapled peptides in aqueous solution
title_sort employing complementary spectroscopies to study the conformations of an epimeric pair of side-chain stapled peptides in aqueous solution
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8694311/
https://www.ncbi.nlm.nih.gov/pubmed/35424346
http://dx.doi.org/10.1039/d0ra10167b
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