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Comparative Anatomy of Chromosomal Domains with Imprinted and Non-Imprinted Allele-Specific DNA Methylation

Allele-specific DNA methylation (ASM) is well studied in imprinted domains, but this type of epigenetic asymmetry is actually found more commonly at non-imprinted loci, where the ASM is dictated not by parent-of-origin but instead by the local haplotype. We identified loci with strong ASM in human t...

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Autores principales: Paliwal, Anupam, Temkin, Alexis M., Kerkel, Kristi, Yale, Alexander, Yotova, Iveta, Drost, Natalia, Lax, Simon, Nhan-Chang, Chia-Ling, Powell, Charles, Borczuk, Alain, Aviv, Abraham, Wapner, Ronald, Chen, Xiaowei, Nagy, Peter L., Schork, Nicholas, Do, Catherine, Torkamani, Ali, Tycko, Benjamin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3757050/
https://www.ncbi.nlm.nih.gov/pubmed/24009515
http://dx.doi.org/10.1371/journal.pgen.1003622
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author Paliwal, Anupam
Temkin, Alexis M.
Kerkel, Kristi
Yale, Alexander
Yotova, Iveta
Drost, Natalia
Lax, Simon
Nhan-Chang, Chia-Ling
Powell, Charles
Borczuk, Alain
Aviv, Abraham
Wapner, Ronald
Chen, Xiaowei
Nagy, Peter L.
Schork, Nicholas
Do, Catherine
Torkamani, Ali
Tycko, Benjamin
author_facet Paliwal, Anupam
Temkin, Alexis M.
Kerkel, Kristi
Yale, Alexander
Yotova, Iveta
Drost, Natalia
Lax, Simon
Nhan-Chang, Chia-Ling
Powell, Charles
Borczuk, Alain
Aviv, Abraham
Wapner, Ronald
Chen, Xiaowei
Nagy, Peter L.
Schork, Nicholas
Do, Catherine
Torkamani, Ali
Tycko, Benjamin
author_sort Paliwal, Anupam
collection PubMed
description Allele-specific DNA methylation (ASM) is well studied in imprinted domains, but this type of epigenetic asymmetry is actually found more commonly at non-imprinted loci, where the ASM is dictated not by parent-of-origin but instead by the local haplotype. We identified loci with strong ASM in human tissues from methylation-sensitive SNP array data. Two index regions (bisulfite PCR amplicons), one between the C3orf27 and RPN1 genes in chromosome band 3q21 and the other near the VTRNA2-1 vault RNA in band 5q31, proved to be new examples of imprinted DMRs (maternal alleles methylated) while a third, between STEAP3 and C2orf76 in chromosome band 2q14, showed non-imprinted haplotype-dependent ASM. Using long-read bisulfite sequencing (bis-seq) in 8 human tissues we found that in all 3 domains the ASM is restricted to single differentially methylated regions (DMRs), each less than 2kb. The ASM in the C3orf27-RPN1 intergenic region was placenta-specific and associated with allele-specific expression of a long non-coding RNA. Strikingly, the discrete DMRs in all 3 regions overlap with binding sites for the insulator protein CTCF, which we found selectively bound to the unmethylated allele of the STEAP3-C2orf76 DMR. Methylation mapping in two additional genes with non-imprinted haplotype-dependent ASM, ELK3 and CYP2A7, showed that the CYP2A7 DMR also overlaps a CTCF site. Thus, two features of imprinted domains, highly localized DMRs and allele-specific insulator occupancy by CTCF, can also be found in chromosomal domains with non-imprinted ASM. Arguing for biological importance, our analysis of published whole genome bis-seq data from hES cells revealed multiple genome-wide association study (GWAS) peaks near CTCF binding sites with ASM.
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spelling pubmed-37570502013-09-05 Comparative Anatomy of Chromosomal Domains with Imprinted and Non-Imprinted Allele-Specific DNA Methylation Paliwal, Anupam Temkin, Alexis M. Kerkel, Kristi Yale, Alexander Yotova, Iveta Drost, Natalia Lax, Simon Nhan-Chang, Chia-Ling Powell, Charles Borczuk, Alain Aviv, Abraham Wapner, Ronald Chen, Xiaowei Nagy, Peter L. Schork, Nicholas Do, Catherine Torkamani, Ali Tycko, Benjamin PLoS Genet Research Article Allele-specific DNA methylation (ASM) is well studied in imprinted domains, but this type of epigenetic asymmetry is actually found more commonly at non-imprinted loci, where the ASM is dictated not by parent-of-origin but instead by the local haplotype. We identified loci with strong ASM in human tissues from methylation-sensitive SNP array data. Two index regions (bisulfite PCR amplicons), one between the C3orf27 and RPN1 genes in chromosome band 3q21 and the other near the VTRNA2-1 vault RNA in band 5q31, proved to be new examples of imprinted DMRs (maternal alleles methylated) while a third, between STEAP3 and C2orf76 in chromosome band 2q14, showed non-imprinted haplotype-dependent ASM. Using long-read bisulfite sequencing (bis-seq) in 8 human tissues we found that in all 3 domains the ASM is restricted to single differentially methylated regions (DMRs), each less than 2kb. The ASM in the C3orf27-RPN1 intergenic region was placenta-specific and associated with allele-specific expression of a long non-coding RNA. Strikingly, the discrete DMRs in all 3 regions overlap with binding sites for the insulator protein CTCF, which we found selectively bound to the unmethylated allele of the STEAP3-C2orf76 DMR. Methylation mapping in two additional genes with non-imprinted haplotype-dependent ASM, ELK3 and CYP2A7, showed that the CYP2A7 DMR also overlaps a CTCF site. Thus, two features of imprinted domains, highly localized DMRs and allele-specific insulator occupancy by CTCF, can also be found in chromosomal domains with non-imprinted ASM. Arguing for biological importance, our analysis of published whole genome bis-seq data from hES cells revealed multiple genome-wide association study (GWAS) peaks near CTCF binding sites with ASM. Public Library of Science 2013-08-29 /pmc/articles/PMC3757050/ /pubmed/24009515 http://dx.doi.org/10.1371/journal.pgen.1003622 Text en © 2013 Paliwal 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
Paliwal, Anupam
Temkin, Alexis M.
Kerkel, Kristi
Yale, Alexander
Yotova, Iveta
Drost, Natalia
Lax, Simon
Nhan-Chang, Chia-Ling
Powell, Charles
Borczuk, Alain
Aviv, Abraham
Wapner, Ronald
Chen, Xiaowei
Nagy, Peter L.
Schork, Nicholas
Do, Catherine
Torkamani, Ali
Tycko, Benjamin
Comparative Anatomy of Chromosomal Domains with Imprinted and Non-Imprinted Allele-Specific DNA Methylation
title Comparative Anatomy of Chromosomal Domains with Imprinted and Non-Imprinted Allele-Specific DNA Methylation
title_full Comparative Anatomy of Chromosomal Domains with Imprinted and Non-Imprinted Allele-Specific DNA Methylation
title_fullStr Comparative Anatomy of Chromosomal Domains with Imprinted and Non-Imprinted Allele-Specific DNA Methylation
title_full_unstemmed Comparative Anatomy of Chromosomal Domains with Imprinted and Non-Imprinted Allele-Specific DNA Methylation
title_short Comparative Anatomy of Chromosomal Domains with Imprinted and Non-Imprinted Allele-Specific DNA Methylation
title_sort comparative anatomy of chromosomal domains with imprinted and non-imprinted allele-specific dna methylation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3757050/
https://www.ncbi.nlm.nih.gov/pubmed/24009515
http://dx.doi.org/10.1371/journal.pgen.1003622
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