Cargando…

The Crystal Structure of the Orphan Nuclear Receptor NR2E3/PNR Ligand Binding Domain Reveals a Dimeric Auto-Repressed Conformation

Photoreceptor-specific nuclear receptor (PNR, NR2E3) is a key transcriptional regulator of human photoreceptor differentiation and maintenance. Mutations in the NR2E3-encoding gene cause various retinal degenerations, including Enhanced S-cone syndrome, retinitis pigmentosa, and Goldman-Favre diseas...

Descripción completa

Detalles Bibliográficos
Autores principales: Tan, M. H. Eileen, Zhou, X. Edward, Soon, Fen-Fen, Li, Xiaodan, Li, Jun, Yong, Eu-Leong, Melcher, Karsten, Xu, H. Eric
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3771917/
https://www.ncbi.nlm.nih.gov/pubmed/24069298
http://dx.doi.org/10.1371/journal.pone.0074359
_version_ 1782284244905623552
author Tan, M. H. Eileen
Zhou, X. Edward
Soon, Fen-Fen
Li, Xiaodan
Li, Jun
Yong, Eu-Leong
Melcher, Karsten
Xu, H. Eric
author_facet Tan, M. H. Eileen
Zhou, X. Edward
Soon, Fen-Fen
Li, Xiaodan
Li, Jun
Yong, Eu-Leong
Melcher, Karsten
Xu, H. Eric
author_sort Tan, M. H. Eileen
collection PubMed
description Photoreceptor-specific nuclear receptor (PNR, NR2E3) is a key transcriptional regulator of human photoreceptor differentiation and maintenance. Mutations in the NR2E3-encoding gene cause various retinal degenerations, including Enhanced S-cone syndrome, retinitis pigmentosa, and Goldman-Favre disease. Although physiological ligands have not been identified, it is believed that binding of small molecule agonists, receptor desumoylation, and receptor heterodimerization may switch NR2E3 from a transcriptional repressor to an activator. While these features make NR2E3 a potential therapeutic target for the treatment of retinal diseases, there has been a clear lack of structural information for the receptor. Here, we report the crystal structure of the apo NR2E3 ligand binding domain (LBD) at 2.8 Å resolution. Apo NR2E3 functions as transcriptional repressor in cells and the structure of its LBD is in a dimeric auto-repressed conformation. In this conformation, the putative ligand binding pocket is filled with bulky hydrophobic residues and the activation-function-2 (AF2) helix occupies the canonical cofactor binding site. Mutations designed to disrupt either the AF2/cofactor-binding site interface or the dimer interface compromised the transcriptional repressor activity of this receptor. Together, these results reveal several conserved structural features shared by related orphan nuclear receptors, suggest that most disease-causing mutations affect the receptor’s structural integrity, and allowed us to model a putative active conformation that can accommodate small ligands in its pocket.
format Online
Article
Text
id pubmed-3771917
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-37719172013-09-25 The Crystal Structure of the Orphan Nuclear Receptor NR2E3/PNR Ligand Binding Domain Reveals a Dimeric Auto-Repressed Conformation Tan, M. H. Eileen Zhou, X. Edward Soon, Fen-Fen Li, Xiaodan Li, Jun Yong, Eu-Leong Melcher, Karsten Xu, H. Eric PLoS One Research Article Photoreceptor-specific nuclear receptor (PNR, NR2E3) is a key transcriptional regulator of human photoreceptor differentiation and maintenance. Mutations in the NR2E3-encoding gene cause various retinal degenerations, including Enhanced S-cone syndrome, retinitis pigmentosa, and Goldman-Favre disease. Although physiological ligands have not been identified, it is believed that binding of small molecule agonists, receptor desumoylation, and receptor heterodimerization may switch NR2E3 from a transcriptional repressor to an activator. While these features make NR2E3 a potential therapeutic target for the treatment of retinal diseases, there has been a clear lack of structural information for the receptor. Here, we report the crystal structure of the apo NR2E3 ligand binding domain (LBD) at 2.8 Å resolution. Apo NR2E3 functions as transcriptional repressor in cells and the structure of its LBD is in a dimeric auto-repressed conformation. In this conformation, the putative ligand binding pocket is filled with bulky hydrophobic residues and the activation-function-2 (AF2) helix occupies the canonical cofactor binding site. Mutations designed to disrupt either the AF2/cofactor-binding site interface or the dimer interface compromised the transcriptional repressor activity of this receptor. Together, these results reveal several conserved structural features shared by related orphan nuclear receptors, suggest that most disease-causing mutations affect the receptor’s structural integrity, and allowed us to model a putative active conformation that can accommodate small ligands in its pocket. Public Library of Science 2013-09-12 /pmc/articles/PMC3771917/ /pubmed/24069298 http://dx.doi.org/10.1371/journal.pone.0074359 Text en © 2013 Tan 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
Tan, M. H. Eileen
Zhou, X. Edward
Soon, Fen-Fen
Li, Xiaodan
Li, Jun
Yong, Eu-Leong
Melcher, Karsten
Xu, H. Eric
The Crystal Structure of the Orphan Nuclear Receptor NR2E3/PNR Ligand Binding Domain Reveals a Dimeric Auto-Repressed Conformation
title The Crystal Structure of the Orphan Nuclear Receptor NR2E3/PNR Ligand Binding Domain Reveals a Dimeric Auto-Repressed Conformation
title_full The Crystal Structure of the Orphan Nuclear Receptor NR2E3/PNR Ligand Binding Domain Reveals a Dimeric Auto-Repressed Conformation
title_fullStr The Crystal Structure of the Orphan Nuclear Receptor NR2E3/PNR Ligand Binding Domain Reveals a Dimeric Auto-Repressed Conformation
title_full_unstemmed The Crystal Structure of the Orphan Nuclear Receptor NR2E3/PNR Ligand Binding Domain Reveals a Dimeric Auto-Repressed Conformation
title_short The Crystal Structure of the Orphan Nuclear Receptor NR2E3/PNR Ligand Binding Domain Reveals a Dimeric Auto-Repressed Conformation
title_sort crystal structure of the orphan nuclear receptor nr2e3/pnr ligand binding domain reveals a dimeric auto-repressed conformation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3771917/
https://www.ncbi.nlm.nih.gov/pubmed/24069298
http://dx.doi.org/10.1371/journal.pone.0074359
work_keys_str_mv AT tanmheileen thecrystalstructureoftheorphannuclearreceptornr2e3pnrligandbindingdomainrevealsadimericautorepressedconformation
AT zhouxedward thecrystalstructureoftheorphannuclearreceptornr2e3pnrligandbindingdomainrevealsadimericautorepressedconformation
AT soonfenfen thecrystalstructureoftheorphannuclearreceptornr2e3pnrligandbindingdomainrevealsadimericautorepressedconformation
AT lixiaodan thecrystalstructureoftheorphannuclearreceptornr2e3pnrligandbindingdomainrevealsadimericautorepressedconformation
AT lijun thecrystalstructureoftheorphannuclearreceptornr2e3pnrligandbindingdomainrevealsadimericautorepressedconformation
AT yongeuleong thecrystalstructureoftheorphannuclearreceptornr2e3pnrligandbindingdomainrevealsadimericautorepressedconformation
AT melcherkarsten thecrystalstructureoftheorphannuclearreceptornr2e3pnrligandbindingdomainrevealsadimericautorepressedconformation
AT xuheric thecrystalstructureoftheorphannuclearreceptornr2e3pnrligandbindingdomainrevealsadimericautorepressedconformation
AT tanmheileen crystalstructureoftheorphannuclearreceptornr2e3pnrligandbindingdomainrevealsadimericautorepressedconformation
AT zhouxedward crystalstructureoftheorphannuclearreceptornr2e3pnrligandbindingdomainrevealsadimericautorepressedconformation
AT soonfenfen crystalstructureoftheorphannuclearreceptornr2e3pnrligandbindingdomainrevealsadimericautorepressedconformation
AT lixiaodan crystalstructureoftheorphannuclearreceptornr2e3pnrligandbindingdomainrevealsadimericautorepressedconformation
AT lijun crystalstructureoftheorphannuclearreceptornr2e3pnrligandbindingdomainrevealsadimericautorepressedconformation
AT yongeuleong crystalstructureoftheorphannuclearreceptornr2e3pnrligandbindingdomainrevealsadimericautorepressedconformation
AT melcherkarsten crystalstructureoftheorphannuclearreceptornr2e3pnrligandbindingdomainrevealsadimericautorepressedconformation
AT xuheric crystalstructureoftheorphannuclearreceptornr2e3pnrligandbindingdomainrevealsadimericautorepressedconformation