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Ligand Dependent Switch from RXR Homo- to RXR-NURR1 Heterodimerization

[Image: see text] Retinoid X receptors (RXRs) play key roles in many physiological processes in both the periphery and central nervous system. In addition, RXRs form heterodimers with other nuclear receptors to exert their physiological effects. The nuclear receptor related 1 protein (NURR1) is part...

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Autores principales: Scheepstra, Marcel, Andrei, Sebastian A., de Vries, Rens M. J. M., Meijer, Femke A., Ma, Jian-Nong, Burstein, Ethan S., Olsson, Roger, Ottmann, Christian, Milroy, Lech-Gustav, Brunsveld, Luc
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2017
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5609127/
https://www.ncbi.nlm.nih.gov/pubmed/28691794
http://dx.doi.org/10.1021/acschemneuro.7b00216
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author Scheepstra, Marcel
Andrei, Sebastian A.
de Vries, Rens M. J. M.
Meijer, Femke A.
Ma, Jian-Nong
Burstein, Ethan S.
Olsson, Roger
Ottmann, Christian
Milroy, Lech-Gustav
Brunsveld, Luc
author_facet Scheepstra, Marcel
Andrei, Sebastian A.
de Vries, Rens M. J. M.
Meijer, Femke A.
Ma, Jian-Nong
Burstein, Ethan S.
Olsson, Roger
Ottmann, Christian
Milroy, Lech-Gustav
Brunsveld, Luc
author_sort Scheepstra, Marcel
collection PubMed
description [Image: see text] Retinoid X receptors (RXRs) play key roles in many physiological processes in both the periphery and central nervous system. In addition, RXRs form heterodimers with other nuclear receptors to exert their physiological effects. The nuclear receptor related 1 protein (NURR1) is particularly interesting because of its role in promoting differentiation and survival of dopamine neurons. However, only a small number of RXR-heterodimer selective modulators are available, with limited chemical diversity. This work describes the synthesis, biochemical evaluation, and structural elucidation of a novel series of RXR ligands with strongly biased interactions with RXRα–NURR1 heterodimers. Targeted modifications to the small molecule biaryl scaffold caused local RXRα side-chain disturbances and displacement of secondary structural elements upon ligand binding. This resulted in the repositioning of protein helices in the heterodimer interface of RXRα, alterations in homo- versus heterodimer formation, and modulation of activation function 2 (AF2). The data provide a rationale for the design of RXR ligands consisting of a highly conserved hydrophilic region, strongly contributing to the ligand affinity, and a variable hydrophobic region, which efficiently probes the effects of structural changes at the level of the ligand on co-regulator recruitment or the RXRα–NURR1 dimerization interface.
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spelling pubmed-56091272017-09-25 Ligand Dependent Switch from RXR Homo- to RXR-NURR1 Heterodimerization Scheepstra, Marcel Andrei, Sebastian A. de Vries, Rens M. J. M. Meijer, Femke A. Ma, Jian-Nong Burstein, Ethan S. Olsson, Roger Ottmann, Christian Milroy, Lech-Gustav Brunsveld, Luc ACS Chem Neurosci [Image: see text] Retinoid X receptors (RXRs) play key roles in many physiological processes in both the periphery and central nervous system. In addition, RXRs form heterodimers with other nuclear receptors to exert their physiological effects. The nuclear receptor related 1 protein (NURR1) is particularly interesting because of its role in promoting differentiation and survival of dopamine neurons. However, only a small number of RXR-heterodimer selective modulators are available, with limited chemical diversity. This work describes the synthesis, biochemical evaluation, and structural elucidation of a novel series of RXR ligands with strongly biased interactions with RXRα–NURR1 heterodimers. Targeted modifications to the small molecule biaryl scaffold caused local RXRα side-chain disturbances and displacement of secondary structural elements upon ligand binding. This resulted in the repositioning of protein helices in the heterodimer interface of RXRα, alterations in homo- versus heterodimer formation, and modulation of activation function 2 (AF2). The data provide a rationale for the design of RXR ligands consisting of a highly conserved hydrophilic region, strongly contributing to the ligand affinity, and a variable hydrophobic region, which efficiently probes the effects of structural changes at the level of the ligand on co-regulator recruitment or the RXRα–NURR1 dimerization interface. American Chemical Society 2017-07-10 /pmc/articles/PMC5609127/ /pubmed/28691794 http://dx.doi.org/10.1021/acschemneuro.7b00216 Text en Copyright © 2017 American Chemical Society This is an open access article published under a Creative Commons Non-Commercial No Derivative Works (CC-BY-NC-ND) Attribution License (http://pubs.acs.org/page/policy/authorchoice_ccbyncnd_termsofuse.html) , which permits copying and redistribution of the article, and creation of adaptations, all for non-commercial purposes.
spellingShingle Scheepstra, Marcel
Andrei, Sebastian A.
de Vries, Rens M. J. M.
Meijer, Femke A.
Ma, Jian-Nong
Burstein, Ethan S.
Olsson, Roger
Ottmann, Christian
Milroy, Lech-Gustav
Brunsveld, Luc
Ligand Dependent Switch from RXR Homo- to RXR-NURR1 Heterodimerization
title Ligand Dependent Switch from RXR Homo- to RXR-NURR1 Heterodimerization
title_full Ligand Dependent Switch from RXR Homo- to RXR-NURR1 Heterodimerization
title_fullStr Ligand Dependent Switch from RXR Homo- to RXR-NURR1 Heterodimerization
title_full_unstemmed Ligand Dependent Switch from RXR Homo- to RXR-NURR1 Heterodimerization
title_short Ligand Dependent Switch from RXR Homo- to RXR-NURR1 Heterodimerization
title_sort ligand dependent switch from rxr homo- to rxr-nurr1 heterodimerization
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5609127/
https://www.ncbi.nlm.nih.gov/pubmed/28691794
http://dx.doi.org/10.1021/acschemneuro.7b00216
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