Cargando…

Characterization of the Contradictory Chromatin Signatures at the 3′ Exons of Zinc Finger Genes

The H3K9me3 histone modification is often found at promoter regions, where it functions to repress transcription. However, we have previously shown that 3′ exons of zinc finger genes (ZNFs) are marked by high levels of H3K9me3. We have now further investigated this unusual location for H3K9me3 in ZN...

Descripción completa

Detalles Bibliográficos
Autores principales: Blahnik, Kimberly R., Dou, Lei, Echipare, Lorigail, Iyengar, Sushma, O'Geen, Henriette, Sanchez, Erica, Zhao, Yongjun, Marra, Marco A., Hirst, Martin, Costello, Joseph F., Korf, Ian, Farnham, Peggy J.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3039671/
https://www.ncbi.nlm.nih.gov/pubmed/21347206
http://dx.doi.org/10.1371/journal.pone.0017121
_version_ 1782198221543571456
author Blahnik, Kimberly R.
Dou, Lei
Echipare, Lorigail
Iyengar, Sushma
O'Geen, Henriette
Sanchez, Erica
Zhao, Yongjun
Marra, Marco A.
Hirst, Martin
Costello, Joseph F.
Korf, Ian
Farnham, Peggy J.
author_facet Blahnik, Kimberly R.
Dou, Lei
Echipare, Lorigail
Iyengar, Sushma
O'Geen, Henriette
Sanchez, Erica
Zhao, Yongjun
Marra, Marco A.
Hirst, Martin
Costello, Joseph F.
Korf, Ian
Farnham, Peggy J.
author_sort Blahnik, Kimberly R.
collection PubMed
description The H3K9me3 histone modification is often found at promoter regions, where it functions to repress transcription. However, we have previously shown that 3′ exons of zinc finger genes (ZNFs) are marked by high levels of H3K9me3. We have now further investigated this unusual location for H3K9me3 in ZNF genes. Neither bioinformatic nor experimental approaches support the hypothesis that the 3′ exons of ZNFs are promoters. We further characterized the histone modifications at the 3′ ZNF exons and found that these regions also contain H3K36me3, a mark of transcriptional elongation. A genome-wide analysis of ChIP-seq data revealed that ZNFs constitute the majority of genes that have high levels of both H3K9me3 and H3K36me3. These results suggested the possibility that the ZNF genes may be imprinted, with one allele transcribed and one allele repressed. To test the hypothesis that the contradictory modifications are due to imprinting, we used a SNP analysis of RNA-seq data to demonstrate that both alleles of certain ZNF genes having H3K9me3 and H3K36me3 are transcribed. We next analyzed isolated ZNF 3′ exons using stably integrated episomes. We found that although the H3K36me3 mark was lost when the 3′ ZNF exon was removed from its natural genomic location, the isolated ZNF 3′ exons retained the H3K9me3 mark. Thus, the H3K9me3 mark at ZNF 3′ exons does not impede transcription and it is regulated independently of the H3K36me3 mark. Finally, we demonstrate a strong relationship between the number of tandemly repeated domains in the 3′ exons and the H3K9me3 mark. We suggest that the H3K9me3 at ZNF 3′ exons may function to protect the genome from inappropriate recombination rather than to regulate transcription.
format Text
id pubmed-3039671
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-30396712011-02-23 Characterization of the Contradictory Chromatin Signatures at the 3′ Exons of Zinc Finger Genes Blahnik, Kimberly R. Dou, Lei Echipare, Lorigail Iyengar, Sushma O'Geen, Henriette Sanchez, Erica Zhao, Yongjun Marra, Marco A. Hirst, Martin Costello, Joseph F. Korf, Ian Farnham, Peggy J. PLoS One Research Article The H3K9me3 histone modification is often found at promoter regions, where it functions to repress transcription. However, we have previously shown that 3′ exons of zinc finger genes (ZNFs) are marked by high levels of H3K9me3. We have now further investigated this unusual location for H3K9me3 in ZNF genes. Neither bioinformatic nor experimental approaches support the hypothesis that the 3′ exons of ZNFs are promoters. We further characterized the histone modifications at the 3′ ZNF exons and found that these regions also contain H3K36me3, a mark of transcriptional elongation. A genome-wide analysis of ChIP-seq data revealed that ZNFs constitute the majority of genes that have high levels of both H3K9me3 and H3K36me3. These results suggested the possibility that the ZNF genes may be imprinted, with one allele transcribed and one allele repressed. To test the hypothesis that the contradictory modifications are due to imprinting, we used a SNP analysis of RNA-seq data to demonstrate that both alleles of certain ZNF genes having H3K9me3 and H3K36me3 are transcribed. We next analyzed isolated ZNF 3′ exons using stably integrated episomes. We found that although the H3K36me3 mark was lost when the 3′ ZNF exon was removed from its natural genomic location, the isolated ZNF 3′ exons retained the H3K9me3 mark. Thus, the H3K9me3 mark at ZNF 3′ exons does not impede transcription and it is regulated independently of the H3K36me3 mark. Finally, we demonstrate a strong relationship between the number of tandemly repeated domains in the 3′ exons and the H3K9me3 mark. We suggest that the H3K9me3 at ZNF 3′ exons may function to protect the genome from inappropriate recombination rather than to regulate transcription. Public Library of Science 2011-02-15 /pmc/articles/PMC3039671/ /pubmed/21347206 http://dx.doi.org/10.1371/journal.pone.0017121 Text en Blahnik 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
Blahnik, Kimberly R.
Dou, Lei
Echipare, Lorigail
Iyengar, Sushma
O'Geen, Henriette
Sanchez, Erica
Zhao, Yongjun
Marra, Marco A.
Hirst, Martin
Costello, Joseph F.
Korf, Ian
Farnham, Peggy J.
Characterization of the Contradictory Chromatin Signatures at the 3′ Exons of Zinc Finger Genes
title Characterization of the Contradictory Chromatin Signatures at the 3′ Exons of Zinc Finger Genes
title_full Characterization of the Contradictory Chromatin Signatures at the 3′ Exons of Zinc Finger Genes
title_fullStr Characterization of the Contradictory Chromatin Signatures at the 3′ Exons of Zinc Finger Genes
title_full_unstemmed Characterization of the Contradictory Chromatin Signatures at the 3′ Exons of Zinc Finger Genes
title_short Characterization of the Contradictory Chromatin Signatures at the 3′ Exons of Zinc Finger Genes
title_sort characterization of the contradictory chromatin signatures at the 3′ exons of zinc finger genes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3039671/
https://www.ncbi.nlm.nih.gov/pubmed/21347206
http://dx.doi.org/10.1371/journal.pone.0017121
work_keys_str_mv AT blahnikkimberlyr characterizationofthecontradictorychromatinsignaturesatthe3exonsofzincfingergenes
AT doulei characterizationofthecontradictorychromatinsignaturesatthe3exonsofzincfingergenes
AT echiparelorigail characterizationofthecontradictorychromatinsignaturesatthe3exonsofzincfingergenes
AT iyengarsushma characterizationofthecontradictorychromatinsignaturesatthe3exonsofzincfingergenes
AT ogeenhenriette characterizationofthecontradictorychromatinsignaturesatthe3exonsofzincfingergenes
AT sanchezerica characterizationofthecontradictorychromatinsignaturesatthe3exonsofzincfingergenes
AT zhaoyongjun characterizationofthecontradictorychromatinsignaturesatthe3exonsofzincfingergenes
AT marramarcoa characterizationofthecontradictorychromatinsignaturesatthe3exonsofzincfingergenes
AT hirstmartin characterizationofthecontradictorychromatinsignaturesatthe3exonsofzincfingergenes
AT costellojosephf characterizationofthecontradictorychromatinsignaturesatthe3exonsofzincfingergenes
AT korfian characterizationofthecontradictorychromatinsignaturesatthe3exonsofzincfingergenes
AT farnhampeggyj characterizationofthecontradictorychromatinsignaturesatthe3exonsofzincfingergenes