Different epigenetic alterations are associated with abnormal IGF2/Igf2 upregulation in neural tube defects.

The methylation status of DNA methylation regions (DMRs) of the imprinted gene IGF2/Igf2 is associated with neural tube defects (NTDs), which are caused by a failure of the neural tube to fold and close and are the second-most common birth defect; however, the characterization of the expression leve...

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Main Authors: Baoling Bai, Qin Zhang, Xiaozhen Liu, Chunyue Miao, Shaofang Shangguan, Yihua Bao, Jin Guo, Li Wang, Ting Zhang, Huili Li
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4244157?pdf=render
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spelling doaj-fe962e88d7e641ff957df8f5244a5db22020-11-25T01:20:00ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-01911e11330810.1371/journal.pone.0113308Different epigenetic alterations are associated with abnormal IGF2/Igf2 upregulation in neural tube defects.Baoling BaiQin ZhangXiaozhen LiuChunyue MiaoShaofang ShangguanYihua BaoJin GuoLi WangTing ZhangHuili LiThe methylation status of DNA methylation regions (DMRs) of the imprinted gene IGF2/Igf2 is associated with neural tube defects (NTDs), which are caused by a failure of the neural tube to fold and close and are the second-most common birth defect; however, the characterization of the expression level of IGF2/Igf2 in neural tissue from human fetuses affected with NTDs remains elusive. More importantly, whether abnormal chromatin structure also influences IGF2/Igf2 expression in NTDs is unclear. Here, we investigated the transcriptional activity of IGF2/Igf2 in normal and NTD spinal cord tissues, the methylation status of different DMRs, and the chromatin structure of the promoter. Our data indicated that in NTD samples from both human fetuses and retinoic acid (RA)-treated mouse fetuses, the expression level of IGF2/Igf2 was upregulated 6.41-fold and 1.84-fold, respectively, compared to controls. H19 DMR1, but not IGF2 DMR0, was hypermethylated in human NTD samples. In NTD mice, h19 DMR1 was stable, whereas the chromatin structure around the promoter of Igf2 might be loosened, which was displayed by higher H3K4 acetylation and lower H3K27 trimethylation. Therefore, the data revealed that IGF2/Igf2 expression can be ectopically up-regulated by dual epigenetic factors in NTDs. In detail, the upregulation of IGF2/Igf2 is likely controlled by hypermethylation of H19 DMR1 in human NTDs, however, in acute external RA-induced NTD mice it is potentially determined by more open chromatin structure.http://europepmc.org/articles/PMC4244157?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Baoling Bai
Qin Zhang
Xiaozhen Liu
Chunyue Miao
Shaofang Shangguan
Yihua Bao
Jin Guo
Li Wang
Ting Zhang
Huili Li
spellingShingle Baoling Bai
Qin Zhang
Xiaozhen Liu
Chunyue Miao
Shaofang Shangguan
Yihua Bao
Jin Guo
Li Wang
Ting Zhang
Huili Li
Different epigenetic alterations are associated with abnormal IGF2/Igf2 upregulation in neural tube defects.
PLoS ONE
author_facet Baoling Bai
Qin Zhang
Xiaozhen Liu
Chunyue Miao
Shaofang Shangguan
Yihua Bao
Jin Guo
Li Wang
Ting Zhang
Huili Li
author_sort Baoling Bai
title Different epigenetic alterations are associated with abnormal IGF2/Igf2 upregulation in neural tube defects.
title_short Different epigenetic alterations are associated with abnormal IGF2/Igf2 upregulation in neural tube defects.
title_full Different epigenetic alterations are associated with abnormal IGF2/Igf2 upregulation in neural tube defects.
title_fullStr Different epigenetic alterations are associated with abnormal IGF2/Igf2 upregulation in neural tube defects.
title_full_unstemmed Different epigenetic alterations are associated with abnormal IGF2/Igf2 upregulation in neural tube defects.
title_sort different epigenetic alterations are associated with abnormal igf2/igf2 upregulation in neural tube defects.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description The methylation status of DNA methylation regions (DMRs) of the imprinted gene IGF2/Igf2 is associated with neural tube defects (NTDs), which are caused by a failure of the neural tube to fold and close and are the second-most common birth defect; however, the characterization of the expression level of IGF2/Igf2 in neural tissue from human fetuses affected with NTDs remains elusive. More importantly, whether abnormal chromatin structure also influences IGF2/Igf2 expression in NTDs is unclear. Here, we investigated the transcriptional activity of IGF2/Igf2 in normal and NTD spinal cord tissues, the methylation status of different DMRs, and the chromatin structure of the promoter. Our data indicated that in NTD samples from both human fetuses and retinoic acid (RA)-treated mouse fetuses, the expression level of IGF2/Igf2 was upregulated 6.41-fold and 1.84-fold, respectively, compared to controls. H19 DMR1, but not IGF2 DMR0, was hypermethylated in human NTD samples. In NTD mice, h19 DMR1 was stable, whereas the chromatin structure around the promoter of Igf2 might be loosened, which was displayed by higher H3K4 acetylation and lower H3K27 trimethylation. Therefore, the data revealed that IGF2/Igf2 expression can be ectopically up-regulated by dual epigenetic factors in NTDs. In detail, the upregulation of IGF2/Igf2 is likely controlled by hypermethylation of H19 DMR1 in human NTDs, however, in acute external RA-induced NTD mice it is potentially determined by more open chromatin structure.
url http://europepmc.org/articles/PMC4244157?pdf=render
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