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Altered hydroxymethylation is seen at regulatory regions in pancreatic cancer and regulates oncogenic pathways

Transcriptional deregulation of oncogenic pathways is a hallmark of cancer and can be due to epigenetic alterations. 5-Hydroxymethylcytosine (5-hmC) is an epigenetic modification that has not been studied in pancreatic cancer. Genome-wide analysis of 5-hmC-enriched loci with hmC-seal was conducted i...

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Autores principales: Bhattacharyya, Sanchari, Pradhan, Kith, Campbell, Nathaniel, Mazdo, Jozef, Vasantkumar, Aparna, Maqbool, Shahina, Bhagat, Tushar D., Gupta, Sonal, Suzuki, Masako, Yu, Yiting, Greally, John M., Steidl, Ulrich, Bradner, James, Dawlaty, Meelad, Godley, Lucy, Maitra, Anirban, Verma, Amit
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5668941/
https://www.ncbi.nlm.nih.gov/pubmed/28986391
http://dx.doi.org/10.1101/gr.222794.117
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author Bhattacharyya, Sanchari
Pradhan, Kith
Campbell, Nathaniel
Mazdo, Jozef
Vasantkumar, Aparna
Maqbool, Shahina
Bhagat, Tushar D.
Gupta, Sonal
Suzuki, Masako
Yu, Yiting
Greally, John M.
Steidl, Ulrich
Bradner, James
Dawlaty, Meelad
Godley, Lucy
Maitra, Anirban
Verma, Amit
author_facet Bhattacharyya, Sanchari
Pradhan, Kith
Campbell, Nathaniel
Mazdo, Jozef
Vasantkumar, Aparna
Maqbool, Shahina
Bhagat, Tushar D.
Gupta, Sonal
Suzuki, Masako
Yu, Yiting
Greally, John M.
Steidl, Ulrich
Bradner, James
Dawlaty, Meelad
Godley, Lucy
Maitra, Anirban
Verma, Amit
author_sort Bhattacharyya, Sanchari
collection PubMed
description Transcriptional deregulation of oncogenic pathways is a hallmark of cancer and can be due to epigenetic alterations. 5-Hydroxymethylcytosine (5-hmC) is an epigenetic modification that has not been studied in pancreatic cancer. Genome-wide analysis of 5-hmC-enriched loci with hmC-seal was conducted in a cohort of low-passage pancreatic cancer cell lines, primary patient-derived xenografts, and pancreatic controls and revealed strikingly altered patterns in neoplastic tissues. Differentially hydroxymethylated regions preferentially affected known regulatory regions of the genome, specifically overlapping with known H3K4me1 enhancers. Furthermore, base pair resolution analysis of cytosine methylation and hydroxymethylation with oxidative bisulfite sequencing was conducted and correlated with chromatin accessibility by ATAC-seq and gene expression by RNA-seq in pancreatic cancer and control samples. 5-hmC was specifically enriched at open regions of chromatin, and gain of 5-hmC was correlated with up-regulation of the cognate transcripts, including many oncogenic pathways implicated in pancreatic neoplasia, such as MYC, KRAS, VEGFA, and BRD4. Specifically, BRD4 was overexpressed and acquired 5-hmC at enhancer regions in the majority of neoplastic samples. Functionally, acquisition of 5-hmC at BRD4 promoter was associated with increase in transcript expression in reporter assays and primary samples. Furthermore, blockade of BRD4 inhibited pancreatic cancer growth in vivo. In summary, redistribution of 5-hmC and preferential enrichment at oncogenic enhancers is a novel regulatory mechanism in human pancreatic cancer.
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spelling pubmed-56689412018-05-01 Altered hydroxymethylation is seen at regulatory regions in pancreatic cancer and regulates oncogenic pathways Bhattacharyya, Sanchari Pradhan, Kith Campbell, Nathaniel Mazdo, Jozef Vasantkumar, Aparna Maqbool, Shahina Bhagat, Tushar D. Gupta, Sonal Suzuki, Masako Yu, Yiting Greally, John M. Steidl, Ulrich Bradner, James Dawlaty, Meelad Godley, Lucy Maitra, Anirban Verma, Amit Genome Res Research Transcriptional deregulation of oncogenic pathways is a hallmark of cancer and can be due to epigenetic alterations. 5-Hydroxymethylcytosine (5-hmC) is an epigenetic modification that has not been studied in pancreatic cancer. Genome-wide analysis of 5-hmC-enriched loci with hmC-seal was conducted in a cohort of low-passage pancreatic cancer cell lines, primary patient-derived xenografts, and pancreatic controls and revealed strikingly altered patterns in neoplastic tissues. Differentially hydroxymethylated regions preferentially affected known regulatory regions of the genome, specifically overlapping with known H3K4me1 enhancers. Furthermore, base pair resolution analysis of cytosine methylation and hydroxymethylation with oxidative bisulfite sequencing was conducted and correlated with chromatin accessibility by ATAC-seq and gene expression by RNA-seq in pancreatic cancer and control samples. 5-hmC was specifically enriched at open regions of chromatin, and gain of 5-hmC was correlated with up-regulation of the cognate transcripts, including many oncogenic pathways implicated in pancreatic neoplasia, such as MYC, KRAS, VEGFA, and BRD4. Specifically, BRD4 was overexpressed and acquired 5-hmC at enhancer regions in the majority of neoplastic samples. Functionally, acquisition of 5-hmC at BRD4 promoter was associated with increase in transcript expression in reporter assays and primary samples. Furthermore, blockade of BRD4 inhibited pancreatic cancer growth in vivo. In summary, redistribution of 5-hmC and preferential enrichment at oncogenic enhancers is a novel regulatory mechanism in human pancreatic cancer. Cold Spring Harbor Laboratory Press 2017-11 /pmc/articles/PMC5668941/ /pubmed/28986391 http://dx.doi.org/10.1101/gr.222794.117 Text en © 2017 Bhattacharyya et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by-nc/4.0/ This article is distributed exclusively by Cold Spring Harbor Laboratory Press for the first six months after the full-issue publication date (see http://genome.cshlp.org/site/misc/terms.xhtml). After six months, it is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/.
spellingShingle Research
Bhattacharyya, Sanchari
Pradhan, Kith
Campbell, Nathaniel
Mazdo, Jozef
Vasantkumar, Aparna
Maqbool, Shahina
Bhagat, Tushar D.
Gupta, Sonal
Suzuki, Masako
Yu, Yiting
Greally, John M.
Steidl, Ulrich
Bradner, James
Dawlaty, Meelad
Godley, Lucy
Maitra, Anirban
Verma, Amit
Altered hydroxymethylation is seen at regulatory regions in pancreatic cancer and regulates oncogenic pathways
title Altered hydroxymethylation is seen at regulatory regions in pancreatic cancer and regulates oncogenic pathways
title_full Altered hydroxymethylation is seen at regulatory regions in pancreatic cancer and regulates oncogenic pathways
title_fullStr Altered hydroxymethylation is seen at regulatory regions in pancreatic cancer and regulates oncogenic pathways
title_full_unstemmed Altered hydroxymethylation is seen at regulatory regions in pancreatic cancer and regulates oncogenic pathways
title_short Altered hydroxymethylation is seen at regulatory regions in pancreatic cancer and regulates oncogenic pathways
title_sort altered hydroxymethylation is seen at regulatory regions in pancreatic cancer and regulates oncogenic pathways
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5668941/
https://www.ncbi.nlm.nih.gov/pubmed/28986391
http://dx.doi.org/10.1101/gr.222794.117
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