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The binding orientations of structurally-related ligands can differ; A cautionary note

Crystal structures can identify ligand-receptor interactions and assist the development of novel therapeutics, but experimental challenges sometimes necessitate the use of homologous proteins. Tropisetron is an orthosteric ligand at both 5-HT(3) and α7 nACh receptors and its binding orientation has...

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Autores principales: Ruepp, Marc-David, Wei, Hao, Leuenberger, Michele, Lochner, Martin, Thompson, Andrew J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Pergamon Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5464333/
https://www.ncbi.nlm.nih.gov/pubmed/28137449
http://dx.doi.org/10.1016/j.neuropharm.2017.01.023
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author Ruepp, Marc-David
Wei, Hao
Leuenberger, Michele
Lochner, Martin
Thompson, Andrew J.
author_facet Ruepp, Marc-David
Wei, Hao
Leuenberger, Michele
Lochner, Martin
Thompson, Andrew J.
author_sort Ruepp, Marc-David
collection PubMed
description Crystal structures can identify ligand-receptor interactions and assist the development of novel therapeutics, but experimental challenges sometimes necessitate the use of homologous proteins. Tropisetron is an orthosteric ligand at both 5-HT(3) and α7 nACh receptors and its binding orientation has been determined in the structural homologue AChBP (pdbid: 2WNC). Co-crystallisation with a structurally-related ligand, granisetron, reveals an almost identical orientation (pdbid; 2YME). However, there is a >1000-fold difference in the affinity of tropisetron at 5-HT(3) versus α7 nACh receptors, and α7 nACh receptors do not bind granisetron. These striking pharmacological differences prompt questions about which receptor the crystal structures most closely represent and whether the ligand orientations are correct. Here we probe the binding orientation of tropisetron and granisetron at 5-HT(3) receptors by in silico modelling and docking, radioligand binding on cysteine-substituted 5-HT(3) receptor mutants transiently expressed in HEK 293 cells, and synthetic modification of the ligands. For 15 of the 23 cysteine substitutions, the effects on tropisetron and granisetron were different. Structure-activity relationships on synthesised derivatives of both ligands were also consistent with different orientations, revealing that contrary to the crystallographic evidence from AChBP, the two ligands adopt different orientations in the 5-HT(3) receptor binding site. Our results show that even quite structurally similar molecules can adopt different orientations in the same binding site, and that caution may be needed when using homologous proteins to predict ligand binding.
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spelling pubmed-54643332017-06-16 The binding orientations of structurally-related ligands can differ; A cautionary note Ruepp, Marc-David Wei, Hao Leuenberger, Michele Lochner, Martin Thompson, Andrew J. Neuropharmacology Article Crystal structures can identify ligand-receptor interactions and assist the development of novel therapeutics, but experimental challenges sometimes necessitate the use of homologous proteins. Tropisetron is an orthosteric ligand at both 5-HT(3) and α7 nACh receptors and its binding orientation has been determined in the structural homologue AChBP (pdbid: 2WNC). Co-crystallisation with a structurally-related ligand, granisetron, reveals an almost identical orientation (pdbid; 2YME). However, there is a >1000-fold difference in the affinity of tropisetron at 5-HT(3) versus α7 nACh receptors, and α7 nACh receptors do not bind granisetron. These striking pharmacological differences prompt questions about which receptor the crystal structures most closely represent and whether the ligand orientations are correct. Here we probe the binding orientation of tropisetron and granisetron at 5-HT(3) receptors by in silico modelling and docking, radioligand binding on cysteine-substituted 5-HT(3) receptor mutants transiently expressed in HEK 293 cells, and synthetic modification of the ligands. For 15 of the 23 cysteine substitutions, the effects on tropisetron and granisetron were different. Structure-activity relationships on synthesised derivatives of both ligands were also consistent with different orientations, revealing that contrary to the crystallographic evidence from AChBP, the two ligands adopt different orientations in the 5-HT(3) receptor binding site. Our results show that even quite structurally similar molecules can adopt different orientations in the same binding site, and that caution may be needed when using homologous proteins to predict ligand binding. Pergamon Press 2017-06 /pmc/articles/PMC5464333/ /pubmed/28137449 http://dx.doi.org/10.1016/j.neuropharm.2017.01.023 Text en © 2017 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ruepp, Marc-David
Wei, Hao
Leuenberger, Michele
Lochner, Martin
Thompson, Andrew J.
The binding orientations of structurally-related ligands can differ; A cautionary note
title The binding orientations of structurally-related ligands can differ; A cautionary note
title_full The binding orientations of structurally-related ligands can differ; A cautionary note
title_fullStr The binding orientations of structurally-related ligands can differ; A cautionary note
title_full_unstemmed The binding orientations of structurally-related ligands can differ; A cautionary note
title_short The binding orientations of structurally-related ligands can differ; A cautionary note
title_sort binding orientations of structurally-related ligands can differ; a cautionary note
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5464333/
https://www.ncbi.nlm.nih.gov/pubmed/28137449
http://dx.doi.org/10.1016/j.neuropharm.2017.01.023
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