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The Human Orphan Nuclear Receptor Tailless (TLX, NR2E1) Is Druggable

Nuclear receptors (NRs) are an important group of ligand-dependent transcriptional factors. Presently, no natural or synthetic ligand has been identified for a large group of orphan NRs. Small molecules to target these orphan NRs will provide unique resources for uncovering regulatory systems that i...

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Autores principales: Benod, Cindy, Villagomez, Rosa, Filgueira, Carly S., Hwang, Peter K., Leonard, Paul G., Poncet-Montange, Guillaume, Rajagopalan, Senapathy, Fletterick, Robert J., Gustafsson, Jan-Åke, Webb, Paul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4060991/
https://www.ncbi.nlm.nih.gov/pubmed/24936658
http://dx.doi.org/10.1371/journal.pone.0099440
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author Benod, Cindy
Villagomez, Rosa
Filgueira, Carly S.
Hwang, Peter K.
Leonard, Paul G.
Poncet-Montange, Guillaume
Rajagopalan, Senapathy
Fletterick, Robert J.
Gustafsson, Jan-Åke
Webb, Paul
author_facet Benod, Cindy
Villagomez, Rosa
Filgueira, Carly S.
Hwang, Peter K.
Leonard, Paul G.
Poncet-Montange, Guillaume
Rajagopalan, Senapathy
Fletterick, Robert J.
Gustafsson, Jan-Åke
Webb, Paul
author_sort Benod, Cindy
collection PubMed
description Nuclear receptors (NRs) are an important group of ligand-dependent transcriptional factors. Presently, no natural or synthetic ligand has been identified for a large group of orphan NRs. Small molecules to target these orphan NRs will provide unique resources for uncovering regulatory systems that impact human health and to modulate these pathways with drugs. The orphan NR tailless (TLX, NR2E1), a transcriptional repressor, is a major player in neurogenesis and Neural Stem Cell (NSC) derived brain tumors. No chemical probes that modulate TLX activity are available, and it is not clear whether TLX is druggable. To assess TLX ligand binding capacity, we created homology models of the TLX ligand binding domain (LBD). Results suggest that TLX belongs to an emerging class of NRs that lack LBD helices α1 and α2 and that it has potential to form a large open ligand binding pocket (LBP). Using a medium throughput screening strategy, we investigated direct binding of 20,000 compounds to purified human TLX protein and verified interactions with a secondary (orthogonal) assay. We then assessed effects of verified binders on TLX activity using luciferase assays. As a result, we report identification of three compounds (ccrp1, ccrp2 and ccrp3) that bind to recombinant TLX protein with affinities in the high nanomolar to low micromolar range and enhance TLX transcriptional repressive activity. We conclude that TLX is druggable and propose that our lead compounds could serve as scaffolds to derive more potent ligands. While our ligands potentiate TLX repressive activity, the question of whether it is possible to develop ligands to de-repress TLX activity remains open.
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spelling pubmed-40609912014-06-20 The Human Orphan Nuclear Receptor Tailless (TLX, NR2E1) Is Druggable Benod, Cindy Villagomez, Rosa Filgueira, Carly S. Hwang, Peter K. Leonard, Paul G. Poncet-Montange, Guillaume Rajagopalan, Senapathy Fletterick, Robert J. Gustafsson, Jan-Åke Webb, Paul PLoS One Research Article Nuclear receptors (NRs) are an important group of ligand-dependent transcriptional factors. Presently, no natural or synthetic ligand has been identified for a large group of orphan NRs. Small molecules to target these orphan NRs will provide unique resources for uncovering regulatory systems that impact human health and to modulate these pathways with drugs. The orphan NR tailless (TLX, NR2E1), a transcriptional repressor, is a major player in neurogenesis and Neural Stem Cell (NSC) derived brain tumors. No chemical probes that modulate TLX activity are available, and it is not clear whether TLX is druggable. To assess TLX ligand binding capacity, we created homology models of the TLX ligand binding domain (LBD). Results suggest that TLX belongs to an emerging class of NRs that lack LBD helices α1 and α2 and that it has potential to form a large open ligand binding pocket (LBP). Using a medium throughput screening strategy, we investigated direct binding of 20,000 compounds to purified human TLX protein and verified interactions with a secondary (orthogonal) assay. We then assessed effects of verified binders on TLX activity using luciferase assays. As a result, we report identification of three compounds (ccrp1, ccrp2 and ccrp3) that bind to recombinant TLX protein with affinities in the high nanomolar to low micromolar range and enhance TLX transcriptional repressive activity. We conclude that TLX is druggable and propose that our lead compounds could serve as scaffolds to derive more potent ligands. While our ligands potentiate TLX repressive activity, the question of whether it is possible to develop ligands to de-repress TLX activity remains open. Public Library of Science 2014-06-17 /pmc/articles/PMC4060991/ /pubmed/24936658 http://dx.doi.org/10.1371/journal.pone.0099440 Text en © 2014 Benod et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Benod, Cindy
Villagomez, Rosa
Filgueira, Carly S.
Hwang, Peter K.
Leonard, Paul G.
Poncet-Montange, Guillaume
Rajagopalan, Senapathy
Fletterick, Robert J.
Gustafsson, Jan-Åke
Webb, Paul
The Human Orphan Nuclear Receptor Tailless (TLX, NR2E1) Is Druggable
title The Human Orphan Nuclear Receptor Tailless (TLX, NR2E1) Is Druggable
title_full The Human Orphan Nuclear Receptor Tailless (TLX, NR2E1) Is Druggable
title_fullStr The Human Orphan Nuclear Receptor Tailless (TLX, NR2E1) Is Druggable
title_full_unstemmed The Human Orphan Nuclear Receptor Tailless (TLX, NR2E1) Is Druggable
title_short The Human Orphan Nuclear Receptor Tailless (TLX, NR2E1) Is Druggable
title_sort human orphan nuclear receptor tailless (tlx, nr2e1) is druggable
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4060991/
https://www.ncbi.nlm.nih.gov/pubmed/24936658
http://dx.doi.org/10.1371/journal.pone.0099440
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