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Structural basis for DNA recognition and allosteric control of the retinoic acid receptors RAR–RXR

Retinoic acid receptors (RARs) as a functional heterodimer with retinoid X receptors (RXRs), bind a diverse series of RA-response elements (RAREs) in regulated genes. Among them, the non-canonical DR0 elements are bound by RXR–RAR with comparable affinities to DR5 elements but DR0 elements do not ac...

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Autores principales: Osz, Judit, McEwen, Alastair G, Bourguet, Maxime, Przybilla, Frédéric, Peluso-Iltis, Carole, Poussin-Courmontagne, Pierre, Mély, Yves, Cianférani, Sarah, Jeffries, Cy M, Svergun, Dmitri I, Rochel, Natacha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7515732/
https://www.ncbi.nlm.nih.gov/pubmed/32974652
http://dx.doi.org/10.1093/nar/gkaa697
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author Osz, Judit
McEwen, Alastair G
Bourguet, Maxime
Przybilla, Frédéric
Peluso-Iltis, Carole
Poussin-Courmontagne, Pierre
Mély, Yves
Cianférani, Sarah
Jeffries, Cy M
Svergun, Dmitri I
Rochel, Natacha
author_facet Osz, Judit
McEwen, Alastair G
Bourguet, Maxime
Przybilla, Frédéric
Peluso-Iltis, Carole
Poussin-Courmontagne, Pierre
Mély, Yves
Cianférani, Sarah
Jeffries, Cy M
Svergun, Dmitri I
Rochel, Natacha
author_sort Osz, Judit
collection PubMed
description Retinoic acid receptors (RARs) as a functional heterodimer with retinoid X receptors (RXRs), bind a diverse series of RA-response elements (RAREs) in regulated genes. Among them, the non-canonical DR0 elements are bound by RXR–RAR with comparable affinities to DR5 elements but DR0 elements do not act transcriptionally as independent RAREs. In this work, we present structural insights for the recognition of DR5 and DR0 elements by RXR–RAR heterodimer using x-ray crystallography, small angle x-ray scattering, and hydrogen/deuterium exchange coupled to mass spectrometry. We solved the crystal structures of RXR–RAR DNA-binding domain in complex with the Rarb2 DR5 and RXR–RXR DNA-binding domain in complex with Hoxb13 DR0. While cooperative binding was observed on DR5, the two molecules bound non-cooperatively on DR0 on opposite sides of the DNA. In addition, our data unveil the structural organization and dynamics of the multi-domain RXR–RAR DNA complexes providing evidence for DNA-dependent allosteric communication between domains. Differential binding modes between DR0 and DR5 were observed leading to differences in conformation and structural dynamics of the multi-domain RXR–RAR DNA complexes. These results reveal that the topological organization of the RAR binding element confer regulatory information by modulating the overall topology and structural dynamics of the RXR–RAR heterodimers.
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spelling pubmed-75157322020-09-30 Structural basis for DNA recognition and allosteric control of the retinoic acid receptors RAR–RXR Osz, Judit McEwen, Alastair G Bourguet, Maxime Przybilla, Frédéric Peluso-Iltis, Carole Poussin-Courmontagne, Pierre Mély, Yves Cianférani, Sarah Jeffries, Cy M Svergun, Dmitri I Rochel, Natacha Nucleic Acids Res Structural Biology Retinoic acid receptors (RARs) as a functional heterodimer with retinoid X receptors (RXRs), bind a diverse series of RA-response elements (RAREs) in regulated genes. Among them, the non-canonical DR0 elements are bound by RXR–RAR with comparable affinities to DR5 elements but DR0 elements do not act transcriptionally as independent RAREs. In this work, we present structural insights for the recognition of DR5 and DR0 elements by RXR–RAR heterodimer using x-ray crystallography, small angle x-ray scattering, and hydrogen/deuterium exchange coupled to mass spectrometry. We solved the crystal structures of RXR–RAR DNA-binding domain in complex with the Rarb2 DR5 and RXR–RXR DNA-binding domain in complex with Hoxb13 DR0. While cooperative binding was observed on DR5, the two molecules bound non-cooperatively on DR0 on opposite sides of the DNA. In addition, our data unveil the structural organization and dynamics of the multi-domain RXR–RAR DNA complexes providing evidence for DNA-dependent allosteric communication between domains. Differential binding modes between DR0 and DR5 were observed leading to differences in conformation and structural dynamics of the multi-domain RXR–RAR DNA complexes. These results reveal that the topological organization of the RAR binding element confer regulatory information by modulating the overall topology and structural dynamics of the RXR–RAR heterodimers. Oxford University Press 2020-08-25 /pmc/articles/PMC7515732/ /pubmed/32974652 http://dx.doi.org/10.1093/nar/gkaa697 Text en © The Author(s) 2020. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Structural Biology
Osz, Judit
McEwen, Alastair G
Bourguet, Maxime
Przybilla, Frédéric
Peluso-Iltis, Carole
Poussin-Courmontagne, Pierre
Mély, Yves
Cianférani, Sarah
Jeffries, Cy M
Svergun, Dmitri I
Rochel, Natacha
Structural basis for DNA recognition and allosteric control of the retinoic acid receptors RAR–RXR
title Structural basis for DNA recognition and allosteric control of the retinoic acid receptors RAR–RXR
title_full Structural basis for DNA recognition and allosteric control of the retinoic acid receptors RAR–RXR
title_fullStr Structural basis for DNA recognition and allosteric control of the retinoic acid receptors RAR–RXR
title_full_unstemmed Structural basis for DNA recognition and allosteric control of the retinoic acid receptors RAR–RXR
title_short Structural basis for DNA recognition and allosteric control of the retinoic acid receptors RAR–RXR
title_sort structural basis for dna recognition and allosteric control of the retinoic acid receptors rar–rxr
topic Structural Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7515732/
https://www.ncbi.nlm.nih.gov/pubmed/32974652
http://dx.doi.org/10.1093/nar/gkaa697
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