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Epigenetic Regulation of Tissue-Type Plasminogen Activator in Human Brain Tissue and Brain-Derived Cells

The serine protease tissue-type plasminogen activator (t-PA) is involved in both vital physiological brain processes, such as synaptic plasticity, and pathophysiological conditions, such as neurodegeneration and ischemic stroke. Recent data suggest that epigenetic mechanisms play an important role i...

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Autores principales: Olsson, Martina, Hultman, Karin, Dunoyer-Geindre, Sylvie, Curtis, Maurice A., Faull, Richard L. M., Kruithof, Egbert K. O., Jern, Christina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Libertas Academica 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4727487/
https://www.ncbi.nlm.nih.gov/pubmed/26823649
http://dx.doi.org/10.4137/GRSB.S30241
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author Olsson, Martina
Hultman, Karin
Dunoyer-Geindre, Sylvie
Curtis, Maurice A.
Faull, Richard L. M.
Kruithof, Egbert K. O.
Jern, Christina
author_facet Olsson, Martina
Hultman, Karin
Dunoyer-Geindre, Sylvie
Curtis, Maurice A.
Faull, Richard L. M.
Kruithof, Egbert K. O.
Jern, Christina
author_sort Olsson, Martina
collection PubMed
description The serine protease tissue-type plasminogen activator (t-PA) is involved in both vital physiological brain processes, such as synaptic plasticity, and pathophysiological conditions, such as neurodegeneration and ischemic stroke. Recent data suggest that epigenetic mechanisms play an important role in the regulation of t-PA in human endothelial cells. However, there are limited data on epigenetic regulation of t-PA in human brain-derived cells. We demonstrate that treatment of cultured human neurons and human astrocytes with the histone deacetylase inhibitors trichostatin A (TSA) and MS-275 resulted in a two- to threefold increase in t-PA mRNA and protein expression levels. Next, we performed a chromatin immunoprecipitation assay on treated astrocytes with antibodies directed against acetylated histones H3 and H4 (both markers of gene activation). Treatment with MS-275 and TSA for 24 hours resulted in a significant increase in H3 acetylation, which could explain the observed increase in t-PA gene activity after the inhibition of histone deacety-lation. Furthermore, DNA methylation analysis of cultured human neurons and astrocytes, as well as human postmortem brain tissue, revealed a stretch of unmethylated CpG dinucleotides in the proximal t-PA promoter, whereas more upstream CpGs were highly methylated. Taken together, these results implicate involvement of epigenetic mechanisms in the regulation of t-PA expression in the human brain.
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spelling pubmed-47274872016-01-28 Epigenetic Regulation of Tissue-Type Plasminogen Activator in Human Brain Tissue and Brain-Derived Cells Olsson, Martina Hultman, Karin Dunoyer-Geindre, Sylvie Curtis, Maurice A. Faull, Richard L. M. Kruithof, Egbert K. O. Jern, Christina Gene Regul Syst Bio Rapid Communication The serine protease tissue-type plasminogen activator (t-PA) is involved in both vital physiological brain processes, such as synaptic plasticity, and pathophysiological conditions, such as neurodegeneration and ischemic stroke. Recent data suggest that epigenetic mechanisms play an important role in the regulation of t-PA in human endothelial cells. However, there are limited data on epigenetic regulation of t-PA in human brain-derived cells. We demonstrate that treatment of cultured human neurons and human astrocytes with the histone deacetylase inhibitors trichostatin A (TSA) and MS-275 resulted in a two- to threefold increase in t-PA mRNA and protein expression levels. Next, we performed a chromatin immunoprecipitation assay on treated astrocytes with antibodies directed against acetylated histones H3 and H4 (both markers of gene activation). Treatment with MS-275 and TSA for 24 hours resulted in a significant increase in H3 acetylation, which could explain the observed increase in t-PA gene activity after the inhibition of histone deacety-lation. Furthermore, DNA methylation analysis of cultured human neurons and astrocytes, as well as human postmortem brain tissue, revealed a stretch of unmethylated CpG dinucleotides in the proximal t-PA promoter, whereas more upstream CpGs were highly methylated. Taken together, these results implicate involvement of epigenetic mechanisms in the regulation of t-PA expression in the human brain. Libertas Academica 2016-01-24 /pmc/articles/PMC4727487/ /pubmed/26823649 http://dx.doi.org/10.4137/GRSB.S30241 Text en © 2016 the author(s), publisher and licensee Libertas Academica Ltd. This is an open-access article distributed under the terms of the Creative Commons CC-BY-NC 3.0 License.
spellingShingle Rapid Communication
Olsson, Martina
Hultman, Karin
Dunoyer-Geindre, Sylvie
Curtis, Maurice A.
Faull, Richard L. M.
Kruithof, Egbert K. O.
Jern, Christina
Epigenetic Regulation of Tissue-Type Plasminogen Activator in Human Brain Tissue and Brain-Derived Cells
title Epigenetic Regulation of Tissue-Type Plasminogen Activator in Human Brain Tissue and Brain-Derived Cells
title_full Epigenetic Regulation of Tissue-Type Plasminogen Activator in Human Brain Tissue and Brain-Derived Cells
title_fullStr Epigenetic Regulation of Tissue-Type Plasminogen Activator in Human Brain Tissue and Brain-Derived Cells
title_full_unstemmed Epigenetic Regulation of Tissue-Type Plasminogen Activator in Human Brain Tissue and Brain-Derived Cells
title_short Epigenetic Regulation of Tissue-Type Plasminogen Activator in Human Brain Tissue and Brain-Derived Cells
title_sort epigenetic regulation of tissue-type plasminogen activator in human brain tissue and brain-derived cells
topic Rapid Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4727487/
https://www.ncbi.nlm.nih.gov/pubmed/26823649
http://dx.doi.org/10.4137/GRSB.S30241
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