Cargando…

The Histone Demethylase PHF8 Is Essential for Endothelial Cell Migration

Epigenetic marks critically control gene expression and thus the cellular activity state. The functions of many epigenetic modifiers in the vascular system have not yet been studied. We screened for histone modifiers in endothelial cells and observed a fairly high expression of the histone plant hom...

Descripción completa

Detalles Bibliográficos
Autores principales: Gu, Lunda, Hitzel, Juliane, Moll, Franziska, Kruse, Christoph, Malik, Randa Abdel, Preussner, Jens, Looso, Mario, Leisegang, Matthias S., Steinhilber, Dieter, Brandes, Ralf P., Fork, Christian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4713448/
https://www.ncbi.nlm.nih.gov/pubmed/26751588
http://dx.doi.org/10.1371/journal.pone.0146645
_version_ 1782410179450503168
author Gu, Lunda
Hitzel, Juliane
Moll, Franziska
Kruse, Christoph
Malik, Randa Abdel
Preussner, Jens
Looso, Mario
Leisegang, Matthias S.
Steinhilber, Dieter
Brandes, Ralf P.
Fork, Christian
author_facet Gu, Lunda
Hitzel, Juliane
Moll, Franziska
Kruse, Christoph
Malik, Randa Abdel
Preussner, Jens
Looso, Mario
Leisegang, Matthias S.
Steinhilber, Dieter
Brandes, Ralf P.
Fork, Christian
author_sort Gu, Lunda
collection PubMed
description Epigenetic marks critically control gene expression and thus the cellular activity state. The functions of many epigenetic modifiers in the vascular system have not yet been studied. We screened for histone modifiers in endothelial cells and observed a fairly high expression of the histone plant homeodomain finger protein 8 (PHF8). Given its high expression, we hypothesize that this histone demethylase is important for endothelial cell function. Overexpression of PHF8 catalyzed the removal of methyl-groups from histone 3 lysine 9 (H3K9) and H4K20, whereas knockdown of the enzyme increased H3K9 methylation. Knockdown of PHF8 by RNAi also attenuated endothelial proliferation and survival. As a functional readout endothelial migration and tube formation was studied. PHF8 siRNA attenuated the capacity for migration and developing of capillary-like structures. Given the impact of PHF8 on cell cycle genes, endothelial E2F transcription factors were screened, which led to the identification of the gene repressor E2F4 to be controlled by PHF8. Importantly, PHF8 maintains E2F4 but not E2F1 expression in endothelial cells. Consistently, chromatin immunoprecipitation revealed that PHF8 reduces the H3K9me2 level at the E2F4 transcriptional start site, demonstrating a direct function of PHF8 in endothelial E2F4 gene regulation. Conclusion: PHF8 by controlling E2F4 expression maintains endothelial function.
format Online
Article
Text
id pubmed-4713448
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-47134482016-01-26 The Histone Demethylase PHF8 Is Essential for Endothelial Cell Migration Gu, Lunda Hitzel, Juliane Moll, Franziska Kruse, Christoph Malik, Randa Abdel Preussner, Jens Looso, Mario Leisegang, Matthias S. Steinhilber, Dieter Brandes, Ralf P. Fork, Christian PLoS One Research Article Epigenetic marks critically control gene expression and thus the cellular activity state. The functions of many epigenetic modifiers in the vascular system have not yet been studied. We screened for histone modifiers in endothelial cells and observed a fairly high expression of the histone plant homeodomain finger protein 8 (PHF8). Given its high expression, we hypothesize that this histone demethylase is important for endothelial cell function. Overexpression of PHF8 catalyzed the removal of methyl-groups from histone 3 lysine 9 (H3K9) and H4K20, whereas knockdown of the enzyme increased H3K9 methylation. Knockdown of PHF8 by RNAi also attenuated endothelial proliferation and survival. As a functional readout endothelial migration and tube formation was studied. PHF8 siRNA attenuated the capacity for migration and developing of capillary-like structures. Given the impact of PHF8 on cell cycle genes, endothelial E2F transcription factors were screened, which led to the identification of the gene repressor E2F4 to be controlled by PHF8. Importantly, PHF8 maintains E2F4 but not E2F1 expression in endothelial cells. Consistently, chromatin immunoprecipitation revealed that PHF8 reduces the H3K9me2 level at the E2F4 transcriptional start site, demonstrating a direct function of PHF8 in endothelial E2F4 gene regulation. Conclusion: PHF8 by controlling E2F4 expression maintains endothelial function. Public Library of Science 2016-01-11 /pmc/articles/PMC4713448/ /pubmed/26751588 http://dx.doi.org/10.1371/journal.pone.0146645 Text en © 2016 Gu 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Gu, Lunda
Hitzel, Juliane
Moll, Franziska
Kruse, Christoph
Malik, Randa Abdel
Preussner, Jens
Looso, Mario
Leisegang, Matthias S.
Steinhilber, Dieter
Brandes, Ralf P.
Fork, Christian
The Histone Demethylase PHF8 Is Essential for Endothelial Cell Migration
title The Histone Demethylase PHF8 Is Essential for Endothelial Cell Migration
title_full The Histone Demethylase PHF8 Is Essential for Endothelial Cell Migration
title_fullStr The Histone Demethylase PHF8 Is Essential for Endothelial Cell Migration
title_full_unstemmed The Histone Demethylase PHF8 Is Essential for Endothelial Cell Migration
title_short The Histone Demethylase PHF8 Is Essential for Endothelial Cell Migration
title_sort histone demethylase phf8 is essential for endothelial cell migration
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4713448/
https://www.ncbi.nlm.nih.gov/pubmed/26751588
http://dx.doi.org/10.1371/journal.pone.0146645
work_keys_str_mv AT gulunda thehistonedemethylasephf8isessentialforendothelialcellmigration
AT hitzeljuliane thehistonedemethylasephf8isessentialforendothelialcellmigration
AT mollfranziska thehistonedemethylasephf8isessentialforendothelialcellmigration
AT krusechristoph thehistonedemethylasephf8isessentialforendothelialcellmigration
AT malikrandaabdel thehistonedemethylasephf8isessentialforendothelialcellmigration
AT preussnerjens thehistonedemethylasephf8isessentialforendothelialcellmigration
AT loosomario thehistonedemethylasephf8isessentialforendothelialcellmigration
AT leisegangmatthiass thehistonedemethylasephf8isessentialforendothelialcellmigration
AT steinhilberdieter thehistonedemethylasephf8isessentialforendothelialcellmigration
AT brandesralfp thehistonedemethylasephf8isessentialforendothelialcellmigration
AT forkchristian thehistonedemethylasephf8isessentialforendothelialcellmigration
AT gulunda histonedemethylasephf8isessentialforendothelialcellmigration
AT hitzeljuliane histonedemethylasephf8isessentialforendothelialcellmigration
AT mollfranziska histonedemethylasephf8isessentialforendothelialcellmigration
AT krusechristoph histonedemethylasephf8isessentialforendothelialcellmigration
AT malikrandaabdel histonedemethylasephf8isessentialforendothelialcellmigration
AT preussnerjens histonedemethylasephf8isessentialforendothelialcellmigration
AT loosomario histonedemethylasephf8isessentialforendothelialcellmigration
AT leisegangmatthiass histonedemethylasephf8isessentialforendothelialcellmigration
AT steinhilberdieter histonedemethylasephf8isessentialforendothelialcellmigration
AT brandesralfp histonedemethylasephf8isessentialforendothelialcellmigration
AT forkchristian histonedemethylasephf8isessentialforendothelialcellmigration