Cargando…

Quantitative High-Throughput Screening Identifies 8-Hydroxyquinolines as Cell-Active Histone Demethylase Inhibitors

BACKGROUND: Small molecule modulators of epigenetic processes are currently sought as basic probes for biochemical mechanisms, and as starting points for development of therapeutic agents. N(ε)-Methylation of lysine residues on histone tails is one of a number of post-translational modifications tha...

Descripción completa

Detalles Bibliográficos
Autores principales: King, Oliver N. F., Li, Xuan Shirley, Sakurai, Masaaki, Kawamura, Akane, Rose, Nathan R., Ng, Stanley S., Quinn, Amy M., Rai, Ganesha, Mott, Bryan T., Beswick, Paul, Klose, Robert J., Oppermann, Udo, Jadhav, Ajit, Heightman, Tom D., Maloney, David J., Schofield, Christopher J., Simeonov, Anton
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2990756/
https://www.ncbi.nlm.nih.gov/pubmed/21124847
http://dx.doi.org/10.1371/journal.pone.0015535
_version_ 1782192511237750784
author King, Oliver N. F.
Li, Xuan Shirley
Sakurai, Masaaki
Kawamura, Akane
Rose, Nathan R.
Ng, Stanley S.
Quinn, Amy M.
Rai, Ganesha
Mott, Bryan T.
Beswick, Paul
Klose, Robert J.
Oppermann, Udo
Jadhav, Ajit
Heightman, Tom D.
Maloney, David J.
Schofield, Christopher J.
Simeonov, Anton
author_facet King, Oliver N. F.
Li, Xuan Shirley
Sakurai, Masaaki
Kawamura, Akane
Rose, Nathan R.
Ng, Stanley S.
Quinn, Amy M.
Rai, Ganesha
Mott, Bryan T.
Beswick, Paul
Klose, Robert J.
Oppermann, Udo
Jadhav, Ajit
Heightman, Tom D.
Maloney, David J.
Schofield, Christopher J.
Simeonov, Anton
author_sort King, Oliver N. F.
collection PubMed
description BACKGROUND: Small molecule modulators of epigenetic processes are currently sought as basic probes for biochemical mechanisms, and as starting points for development of therapeutic agents. N(ε)-Methylation of lysine residues on histone tails is one of a number of post-translational modifications that together enable transcriptional regulation. Histone lysine demethylases antagonize the action of histone methyltransferases in a site- and methylation state-specific manner. N(ε)-Methyllysine demethylases that use 2-oxoglutarate as co-factor are associated with diverse human diseases, including cancer, inflammation and X-linked mental retardation; they are proposed as targets for the therapeutic modulation of transcription. There are few reports on the identification of templates that are amenable to development as potent inhibitors in vivo and large diverse collections have yet to be exploited for the discovery of demethylase inhibitors. PRINCIPAL FINDINGS: High-throughput screening of a ∼236,000-member collection of diverse molecules arrayed as dilution series was used to identify inhibitors of the JMJD2 (KDM4) family of 2-oxoglutarate-dependent histone demethylases. Initial screening hits were prioritized by a combination of cheminformatics, counterscreening using a coupled assay enzyme, and orthogonal confirmatory detection of inhibition by mass spectrometric assays. Follow-up studies were carried out on one of the series identified, 8-hydroxyquinolines, which were shown by crystallographic analyses to inhibit by binding to the active site Fe(II) and to modulate demethylation at the H3K9 locus in a cell-based assay. CONCLUSIONS: These studies demonstrate that diverse compound screening can yield novel inhibitors of 2OG dependent histone demethylases and provide starting points for the development of potent and selective agents to interrogate epigenetic regulation.
format Text
id pubmed-2990756
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-29907562010-12-01 Quantitative High-Throughput Screening Identifies 8-Hydroxyquinolines as Cell-Active Histone Demethylase Inhibitors King, Oliver N. F. Li, Xuan Shirley Sakurai, Masaaki Kawamura, Akane Rose, Nathan R. Ng, Stanley S. Quinn, Amy M. Rai, Ganesha Mott, Bryan T. Beswick, Paul Klose, Robert J. Oppermann, Udo Jadhav, Ajit Heightman, Tom D. Maloney, David J. Schofield, Christopher J. Simeonov, Anton PLoS One Research Article BACKGROUND: Small molecule modulators of epigenetic processes are currently sought as basic probes for biochemical mechanisms, and as starting points for development of therapeutic agents. N(ε)-Methylation of lysine residues on histone tails is one of a number of post-translational modifications that together enable transcriptional regulation. Histone lysine demethylases antagonize the action of histone methyltransferases in a site- and methylation state-specific manner. N(ε)-Methyllysine demethylases that use 2-oxoglutarate as co-factor are associated with diverse human diseases, including cancer, inflammation and X-linked mental retardation; they are proposed as targets for the therapeutic modulation of transcription. There are few reports on the identification of templates that are amenable to development as potent inhibitors in vivo and large diverse collections have yet to be exploited for the discovery of demethylase inhibitors. PRINCIPAL FINDINGS: High-throughput screening of a ∼236,000-member collection of diverse molecules arrayed as dilution series was used to identify inhibitors of the JMJD2 (KDM4) family of 2-oxoglutarate-dependent histone demethylases. Initial screening hits were prioritized by a combination of cheminformatics, counterscreening using a coupled assay enzyme, and orthogonal confirmatory detection of inhibition by mass spectrometric assays. Follow-up studies were carried out on one of the series identified, 8-hydroxyquinolines, which were shown by crystallographic analyses to inhibit by binding to the active site Fe(II) and to modulate demethylation at the H3K9 locus in a cell-based assay. CONCLUSIONS: These studies demonstrate that diverse compound screening can yield novel inhibitors of 2OG dependent histone demethylases and provide starting points for the development of potent and selective agents to interrogate epigenetic regulation. Public Library of Science 2010-11-23 /pmc/articles/PMC2990756/ /pubmed/21124847 http://dx.doi.org/10.1371/journal.pone.0015535 Text en 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. 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
King, Oliver N. F.
Li, Xuan Shirley
Sakurai, Masaaki
Kawamura, Akane
Rose, Nathan R.
Ng, Stanley S.
Quinn, Amy M.
Rai, Ganesha
Mott, Bryan T.
Beswick, Paul
Klose, Robert J.
Oppermann, Udo
Jadhav, Ajit
Heightman, Tom D.
Maloney, David J.
Schofield, Christopher J.
Simeonov, Anton
Quantitative High-Throughput Screening Identifies 8-Hydroxyquinolines as Cell-Active Histone Demethylase Inhibitors
title Quantitative High-Throughput Screening Identifies 8-Hydroxyquinolines as Cell-Active Histone Demethylase Inhibitors
title_full Quantitative High-Throughput Screening Identifies 8-Hydroxyquinolines as Cell-Active Histone Demethylase Inhibitors
title_fullStr Quantitative High-Throughput Screening Identifies 8-Hydroxyquinolines as Cell-Active Histone Demethylase Inhibitors
title_full_unstemmed Quantitative High-Throughput Screening Identifies 8-Hydroxyquinolines as Cell-Active Histone Demethylase Inhibitors
title_short Quantitative High-Throughput Screening Identifies 8-Hydroxyquinolines as Cell-Active Histone Demethylase Inhibitors
title_sort quantitative high-throughput screening identifies 8-hydroxyquinolines as cell-active histone demethylase inhibitors
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2990756/
https://www.ncbi.nlm.nih.gov/pubmed/21124847
http://dx.doi.org/10.1371/journal.pone.0015535
work_keys_str_mv AT kingolivernf quantitativehighthroughputscreeningidentifies8hydroxyquinolinesascellactivehistonedemethylaseinhibitors
AT lixuanshirley quantitativehighthroughputscreeningidentifies8hydroxyquinolinesascellactivehistonedemethylaseinhibitors
AT sakuraimasaaki quantitativehighthroughputscreeningidentifies8hydroxyquinolinesascellactivehistonedemethylaseinhibitors
AT kawamuraakane quantitativehighthroughputscreeningidentifies8hydroxyquinolinesascellactivehistonedemethylaseinhibitors
AT rosenathanr quantitativehighthroughputscreeningidentifies8hydroxyquinolinesascellactivehistonedemethylaseinhibitors
AT ngstanleys quantitativehighthroughputscreeningidentifies8hydroxyquinolinesascellactivehistonedemethylaseinhibitors
AT quinnamym quantitativehighthroughputscreeningidentifies8hydroxyquinolinesascellactivehistonedemethylaseinhibitors
AT raiganesha quantitativehighthroughputscreeningidentifies8hydroxyquinolinesascellactivehistonedemethylaseinhibitors
AT mottbryant quantitativehighthroughputscreeningidentifies8hydroxyquinolinesascellactivehistonedemethylaseinhibitors
AT beswickpaul quantitativehighthroughputscreeningidentifies8hydroxyquinolinesascellactivehistonedemethylaseinhibitors
AT kloserobertj quantitativehighthroughputscreeningidentifies8hydroxyquinolinesascellactivehistonedemethylaseinhibitors
AT oppermannudo quantitativehighthroughputscreeningidentifies8hydroxyquinolinesascellactivehistonedemethylaseinhibitors
AT jadhavajit quantitativehighthroughputscreeningidentifies8hydroxyquinolinesascellactivehistonedemethylaseinhibitors
AT heightmantomd quantitativehighthroughputscreeningidentifies8hydroxyquinolinesascellactivehistonedemethylaseinhibitors
AT maloneydavidj quantitativehighthroughputscreeningidentifies8hydroxyquinolinesascellactivehistonedemethylaseinhibitors
AT schofieldchristopherj quantitativehighthroughputscreeningidentifies8hydroxyquinolinesascellactivehistonedemethylaseinhibitors
AT simeonovanton quantitativehighthroughputscreeningidentifies8hydroxyquinolinesascellactivehistonedemethylaseinhibitors