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The Structural Basis of Gas-Responsive Transcription by the Human Nuclear Hormone Receptor REV-ERBβ

Heme is a ligand for the human nuclear receptors (NR) REV-ERBα and REV-ERBβ, which are transcriptional repressors that play important roles in circadian rhythm, lipid and glucose metabolism, and diseases such as diabetes, atherosclerosis, inflammation, and cancer. Here we show that transcription rep...

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Autores principales: Pardee, Keith I, Xu, Xiaohui, Reinking, Jeff, Schuetz, Anja, Dong, Aiping, Liu, Suya, Zhang, Rongguang, Tiefenbach, Jens, Lajoie, Gilles, Plotnikov, Alexander N, Botchkarev, Alexey, Krause, Henry M, Edwards, Aled
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2652392/
https://www.ncbi.nlm.nih.gov/pubmed/19243223
http://dx.doi.org/10.1371/journal.pbio.1000043
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author Pardee, Keith I
Xu, Xiaohui
Reinking, Jeff
Schuetz, Anja
Dong, Aiping
Liu, Suya
Zhang, Rongguang
Tiefenbach, Jens
Lajoie, Gilles
Plotnikov, Alexander N
Botchkarev, Alexey
Krause, Henry M
Edwards, Aled
author_facet Pardee, Keith I
Xu, Xiaohui
Reinking, Jeff
Schuetz, Anja
Dong, Aiping
Liu, Suya
Zhang, Rongguang
Tiefenbach, Jens
Lajoie, Gilles
Plotnikov, Alexander N
Botchkarev, Alexey
Krause, Henry M
Edwards, Aled
author_sort Pardee, Keith I
collection PubMed
description Heme is a ligand for the human nuclear receptors (NR) REV-ERBα and REV-ERBβ, which are transcriptional repressors that play important roles in circadian rhythm, lipid and glucose metabolism, and diseases such as diabetes, atherosclerosis, inflammation, and cancer. Here we show that transcription repression mediated by heme-bound REV-ERBs is reversed by the addition of nitric oxide (NO), and that the heme and NO effects are mediated by the C-terminal ligand-binding domain (LBD). A 1.9 Å crystal structure of the REV-ERBβ LBD, in complex with the oxidized Fe(III) form of heme, shows that heme binds in a prototypical NR ligand-binding pocket, where the heme iron is coordinately bound by histidine 568 and cysteine 384. Under reducing conditions, spectroscopic studies of the heme-REV-ERBβ complex reveal that the Fe(II) form of the LBD transitions between penta-coordinated and hexa-coordinated structural states, neither of which possess the Cys384 bond observed in the oxidized state. In addition, the Fe(II) LBD is also able to bind either NO or CO, revealing a total of at least six structural states of the protein. The binding of known co-repressors is shown to be highly dependent upon these various liganded states. REV-ERBs are thus highly dynamic receptors that are responsive not only to heme, but also to redox and gas. Taken together, these findings suggest new mechanisms for the systemic coordination of molecular clocks and metabolism. They also raise the possibility for gas-based therapies for the many disorders associated with REV-ERB biological functions.
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spelling pubmed-26523922009-03-07 The Structural Basis of Gas-Responsive Transcription by the Human Nuclear Hormone Receptor REV-ERBβ Pardee, Keith I Xu, Xiaohui Reinking, Jeff Schuetz, Anja Dong, Aiping Liu, Suya Zhang, Rongguang Tiefenbach, Jens Lajoie, Gilles Plotnikov, Alexander N Botchkarev, Alexey Krause, Henry M Edwards, Aled PLoS Biol Research Article Heme is a ligand for the human nuclear receptors (NR) REV-ERBα and REV-ERBβ, which are transcriptional repressors that play important roles in circadian rhythm, lipid and glucose metabolism, and diseases such as diabetes, atherosclerosis, inflammation, and cancer. Here we show that transcription repression mediated by heme-bound REV-ERBs is reversed by the addition of nitric oxide (NO), and that the heme and NO effects are mediated by the C-terminal ligand-binding domain (LBD). A 1.9 Å crystal structure of the REV-ERBβ LBD, in complex with the oxidized Fe(III) form of heme, shows that heme binds in a prototypical NR ligand-binding pocket, where the heme iron is coordinately bound by histidine 568 and cysteine 384. Under reducing conditions, spectroscopic studies of the heme-REV-ERBβ complex reveal that the Fe(II) form of the LBD transitions between penta-coordinated and hexa-coordinated structural states, neither of which possess the Cys384 bond observed in the oxidized state. In addition, the Fe(II) LBD is also able to bind either NO or CO, revealing a total of at least six structural states of the protein. The binding of known co-repressors is shown to be highly dependent upon these various liganded states. REV-ERBs are thus highly dynamic receptors that are responsive not only to heme, but also to redox and gas. Taken together, these findings suggest new mechanisms for the systemic coordination of molecular clocks and metabolism. They also raise the possibility for gas-based therapies for the many disorders associated with REV-ERB biological functions. Public Library of Science 2009-02 2009-02-24 /pmc/articles/PMC2652392/ /pubmed/19243223 http://dx.doi.org/10.1371/journal.pbio.1000043 Text en © 2009 Pardee et al. https://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration, which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose.
spellingShingle Research Article
Pardee, Keith I
Xu, Xiaohui
Reinking, Jeff
Schuetz, Anja
Dong, Aiping
Liu, Suya
Zhang, Rongguang
Tiefenbach, Jens
Lajoie, Gilles
Plotnikov, Alexander N
Botchkarev, Alexey
Krause, Henry M
Edwards, Aled
The Structural Basis of Gas-Responsive Transcription by the Human Nuclear Hormone Receptor REV-ERBβ
title The Structural Basis of Gas-Responsive Transcription by the Human Nuclear Hormone Receptor REV-ERBβ
title_full The Structural Basis of Gas-Responsive Transcription by the Human Nuclear Hormone Receptor REV-ERBβ
title_fullStr The Structural Basis of Gas-Responsive Transcription by the Human Nuclear Hormone Receptor REV-ERBβ
title_full_unstemmed The Structural Basis of Gas-Responsive Transcription by the Human Nuclear Hormone Receptor REV-ERBβ
title_short The Structural Basis of Gas-Responsive Transcription by the Human Nuclear Hormone Receptor REV-ERBβ
title_sort structural basis of gas-responsive transcription by the human nuclear hormone receptor rev-erbβ
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2652392/
https://www.ncbi.nlm.nih.gov/pubmed/19243223
http://dx.doi.org/10.1371/journal.pbio.1000043
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