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CTCF Prevents the Epigenetic Drift of EBV Latency Promoter Qp

The establishment and maintenance of Epstein-Barr Virus (EBV) latent infection requires distinct viral gene expression programs. These gene expression programs, termed latency types, are determined largely by promoter selection, and controlled through the interplay between cell-type specific transcr...

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Autores principales: Tempera, Italo, Wiedmer, Andreas, Dheekollu, Jayaraju, Lieberman, Paul M.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2921154/
https://www.ncbi.nlm.nih.gov/pubmed/20730088
http://dx.doi.org/10.1371/journal.ppat.1001048
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author Tempera, Italo
Wiedmer, Andreas
Dheekollu, Jayaraju
Lieberman, Paul M.
author_facet Tempera, Italo
Wiedmer, Andreas
Dheekollu, Jayaraju
Lieberman, Paul M.
author_sort Tempera, Italo
collection PubMed
description The establishment and maintenance of Epstein-Barr Virus (EBV) latent infection requires distinct viral gene expression programs. These gene expression programs, termed latency types, are determined largely by promoter selection, and controlled through the interplay between cell-type specific transcription factors, chromatin structure, and epigenetic modifications. We used a genome-wide chromatin-immunoprecipitation (ChIP) assay to identify epigenetic modifications that correlate with different latency types. We found that the chromatin insulator protein CTCF binds at several key regulatory nodes in the EBV genome and may compartmentalize epigenetic modifications across the viral genome. Highly enriched CTCF binding sites were identified at the promoter regions upstream of Cp, Wp, EBERs, and Qp. Since Qp is essential for long-term maintenance of viral genomes in type I latency and epithelial cell infections, we focused on the role of CTCF in regulating Qp. Purified CTCF bound ∼40 bp upstream of the EBNA1 binding sites located at +10 bp relative to the transcriptional initiation site at Qp. Mutagenesis of the CTCF binding site in EBV bacmids resulted in a decrease in the recovery of stable hygromycin-resistant episomes in 293 cells. EBV lacking the Qp CTCF site showed a decrease in Qp transcription initiation and a corresponding increase in Cp and Fp promoter utilization at 8 weeks post-transfection. However, by 16 weeks post-transfection, bacmids lacking CTCF sites had no detectable Qp transcription and showed high levels of histone H3 K9 methylation and CpG DNA methylation at the Qp initiation site. These findings provide direct genetic evidence that CTCF functions as a chromatin insulator that prevents the promiscuous transcription of surrounding genes and blocks the epigenetic silencing of an essential promoter, Qp, during EBV latent infection.
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spelling pubmed-29211542010-08-20 CTCF Prevents the Epigenetic Drift of EBV Latency Promoter Qp Tempera, Italo Wiedmer, Andreas Dheekollu, Jayaraju Lieberman, Paul M. PLoS Pathog Research Article The establishment and maintenance of Epstein-Barr Virus (EBV) latent infection requires distinct viral gene expression programs. These gene expression programs, termed latency types, are determined largely by promoter selection, and controlled through the interplay between cell-type specific transcription factors, chromatin structure, and epigenetic modifications. We used a genome-wide chromatin-immunoprecipitation (ChIP) assay to identify epigenetic modifications that correlate with different latency types. We found that the chromatin insulator protein CTCF binds at several key regulatory nodes in the EBV genome and may compartmentalize epigenetic modifications across the viral genome. Highly enriched CTCF binding sites were identified at the promoter regions upstream of Cp, Wp, EBERs, and Qp. Since Qp is essential for long-term maintenance of viral genomes in type I latency and epithelial cell infections, we focused on the role of CTCF in regulating Qp. Purified CTCF bound ∼40 bp upstream of the EBNA1 binding sites located at +10 bp relative to the transcriptional initiation site at Qp. Mutagenesis of the CTCF binding site in EBV bacmids resulted in a decrease in the recovery of stable hygromycin-resistant episomes in 293 cells. EBV lacking the Qp CTCF site showed a decrease in Qp transcription initiation and a corresponding increase in Cp and Fp promoter utilization at 8 weeks post-transfection. However, by 16 weeks post-transfection, bacmids lacking CTCF sites had no detectable Qp transcription and showed high levels of histone H3 K9 methylation and CpG DNA methylation at the Qp initiation site. These findings provide direct genetic evidence that CTCF functions as a chromatin insulator that prevents the promiscuous transcription of surrounding genes and blocks the epigenetic silencing of an essential promoter, Qp, during EBV latent infection. Public Library of Science 2010-08-12 /pmc/articles/PMC2921154/ /pubmed/20730088 http://dx.doi.org/10.1371/journal.ppat.1001048 Text en Tempera 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
Tempera, Italo
Wiedmer, Andreas
Dheekollu, Jayaraju
Lieberman, Paul M.
CTCF Prevents the Epigenetic Drift of EBV Latency Promoter Qp
title CTCF Prevents the Epigenetic Drift of EBV Latency Promoter Qp
title_full CTCF Prevents the Epigenetic Drift of EBV Latency Promoter Qp
title_fullStr CTCF Prevents the Epigenetic Drift of EBV Latency Promoter Qp
title_full_unstemmed CTCF Prevents the Epigenetic Drift of EBV Latency Promoter Qp
title_short CTCF Prevents the Epigenetic Drift of EBV Latency Promoter Qp
title_sort ctcf prevents the epigenetic drift of ebv latency promoter qp
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2921154/
https://www.ncbi.nlm.nih.gov/pubmed/20730088
http://dx.doi.org/10.1371/journal.ppat.1001048
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