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Potential roles of DNA methylation in the initiation and establishment of replicative senescence revealed by array-based methylome and transcriptome analyses

Cellular senescence is classified into two groups: replicative and premature senescence. Gene expression and epigenetic changes are reported to differ between these two groups and cell types. Normal human diploid fibroblast TIG-3 cells have often been used in cellular senescence research; however, t...

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Autores principales: Sakaki, Mizuho, Ebihara, Yukiko, Okamura, Kohji, Nakabayashi, Kazuhiko, Igarashi, Arisa, Matsumoto, Kenji, Hata, Kenichiro, Kobayashi, Yoshiro, Maehara, Kayoko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5291461/
https://www.ncbi.nlm.nih.gov/pubmed/28158250
http://dx.doi.org/10.1371/journal.pone.0171431
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author Sakaki, Mizuho
Ebihara, Yukiko
Okamura, Kohji
Nakabayashi, Kazuhiko
Igarashi, Arisa
Matsumoto, Kenji
Hata, Kenichiro
Kobayashi, Yoshiro
Maehara, Kayoko
author_facet Sakaki, Mizuho
Ebihara, Yukiko
Okamura, Kohji
Nakabayashi, Kazuhiko
Igarashi, Arisa
Matsumoto, Kenji
Hata, Kenichiro
Kobayashi, Yoshiro
Maehara, Kayoko
author_sort Sakaki, Mizuho
collection PubMed
description Cellular senescence is classified into two groups: replicative and premature senescence. Gene expression and epigenetic changes are reported to differ between these two groups and cell types. Normal human diploid fibroblast TIG-3 cells have often been used in cellular senescence research; however, their epigenetic profiles are still not fully understood. To elucidate how cellular senescence is epigenetically regulated in TIG-3 cells, we analyzed the gene expression and DNA methylation profiles of three types of senescent cells, namely, replicatively senescent, ras-induced senescent (RIS), and non-permissive temperature-induced senescent SVts8 cells, using gene expression and DNA methylation microarrays. The expression of genes involved in the cell cycle and immune response was commonly either down- or up-regulated in the three types of senescent cells, respectively. The altered DNA methylation patterns were observed in replicatively senescent cells, but not in prematurely senescent cells. Interestingly, hypomethylated CpG sites detected on non-CpG island regions (“open sea”) were enriched in immune response-related genes that had non-CpG island promoters. The integrated analysis of gene expression and methylation in replicatively senescent cells demonstrated that differentially expressed 867 genes, including cell cycle- and immune response-related genes, were associated with DNA methylation changes in CpG sites close to the transcription start sites (TSSs). Furthermore, several miRNAs regulated in part through DNA methylation were found to affect the expression of their targeted genes. Taken together, these results indicate that the epigenetic changes of DNA methylation regulate the expression of a certain portion of genes and partly contribute to the introduction and establishment of replicative senescence.
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spelling pubmed-52914612017-02-17 Potential roles of DNA methylation in the initiation and establishment of replicative senescence revealed by array-based methylome and transcriptome analyses Sakaki, Mizuho Ebihara, Yukiko Okamura, Kohji Nakabayashi, Kazuhiko Igarashi, Arisa Matsumoto, Kenji Hata, Kenichiro Kobayashi, Yoshiro Maehara, Kayoko PLoS One Research Article Cellular senescence is classified into two groups: replicative and premature senescence. Gene expression and epigenetic changes are reported to differ between these two groups and cell types. Normal human diploid fibroblast TIG-3 cells have often been used in cellular senescence research; however, their epigenetic profiles are still not fully understood. To elucidate how cellular senescence is epigenetically regulated in TIG-3 cells, we analyzed the gene expression and DNA methylation profiles of three types of senescent cells, namely, replicatively senescent, ras-induced senescent (RIS), and non-permissive temperature-induced senescent SVts8 cells, using gene expression and DNA methylation microarrays. The expression of genes involved in the cell cycle and immune response was commonly either down- or up-regulated in the three types of senescent cells, respectively. The altered DNA methylation patterns were observed in replicatively senescent cells, but not in prematurely senescent cells. Interestingly, hypomethylated CpG sites detected on non-CpG island regions (“open sea”) were enriched in immune response-related genes that had non-CpG island promoters. The integrated analysis of gene expression and methylation in replicatively senescent cells demonstrated that differentially expressed 867 genes, including cell cycle- and immune response-related genes, were associated with DNA methylation changes in CpG sites close to the transcription start sites (TSSs). Furthermore, several miRNAs regulated in part through DNA methylation were found to affect the expression of their targeted genes. Taken together, these results indicate that the epigenetic changes of DNA methylation regulate the expression of a certain portion of genes and partly contribute to the introduction and establishment of replicative senescence. Public Library of Science 2017-02-03 /pmc/articles/PMC5291461/ /pubmed/28158250 http://dx.doi.org/10.1371/journal.pone.0171431 Text en © 2017 Sakaki 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Sakaki, Mizuho
Ebihara, Yukiko
Okamura, Kohji
Nakabayashi, Kazuhiko
Igarashi, Arisa
Matsumoto, Kenji
Hata, Kenichiro
Kobayashi, Yoshiro
Maehara, Kayoko
Potential roles of DNA methylation in the initiation and establishment of replicative senescence revealed by array-based methylome and transcriptome analyses
title Potential roles of DNA methylation in the initiation and establishment of replicative senescence revealed by array-based methylome and transcriptome analyses
title_full Potential roles of DNA methylation in the initiation and establishment of replicative senescence revealed by array-based methylome and transcriptome analyses
title_fullStr Potential roles of DNA methylation in the initiation and establishment of replicative senescence revealed by array-based methylome and transcriptome analyses
title_full_unstemmed Potential roles of DNA methylation in the initiation and establishment of replicative senescence revealed by array-based methylome and transcriptome analyses
title_short Potential roles of DNA methylation in the initiation and establishment of replicative senescence revealed by array-based methylome and transcriptome analyses
title_sort potential roles of dna methylation in the initiation and establishment of replicative senescence revealed by array-based methylome and transcriptome analyses
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5291461/
https://www.ncbi.nlm.nih.gov/pubmed/28158250
http://dx.doi.org/10.1371/journal.pone.0171431
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