TY - JOUR
T1 - A tripartite paternally methylated region within the Gpr1-Zdbf2 imprinted domain on mouse chromosome 1 identified by meDIP-on-chip
AU - Hiura, Hitoshi
AU - Sugawara, Atsushi
AU - Ogawa, Hidehiko
AU - John, Rosalind M.
AU - Miyauchi, Naoko
AU - Miyanari, Yusuke
AU - Horiike, Tokumasa
AU - Li, Yufeng
AU - Yaegashi, Nobuo
AU - Sasaki, Hiroyuki
AU - Kono, Tomohiro
AU - Arima, Takahiro
N1 - Funding Information:
KAKENHI (Grant-in-Aid for Scientific Research) on Priority Areas ‘Comparative Genomics’ and B from the Ministry of Education, Culture, Sports, Science and Technology of Japan (19390423, 20017003 and 21028003); Japan Science and Technology Agency (JST); Takeda Science Foundation; Children’s Cancer Association of Japan; National Institute of Genetics (NIG) cooperative Research Program (2008-B); Mitsubishi Foundation; and Smoking Research Foundation; Nestle Nutrition Council Japan. The sponsors of the study had no role in study design, data collection, data analysis, data interpretation or writing the report. Funding for open access charge: KAKENHI (Grant-in-Aid for Scientific Research) on B from the Ministry of Education, Culture, Sports, Science and Technology of Japan (21028003).
PY - 2010/4/29
Y1 - 2010/4/29
N2 - The parent-of-origin specific expression of imprinted genes relies on DNA methylation of CpGdinucleotides at differentially methylated regions (DMRs) during gametogenesis. To date, four paternally methylated DMRs have been identified in screens based on conventional approaches. These DMRs are linked to the imprinted genes H19, Gtl2 (IG-DMR), Rasgrf1 and, most recently, Zdbf2 which encodes zinc finger, DBF-type containing 2. In this study, we applied a novel methylated-DNA immunoprecipitation-on-chip (meDIP-on-chip) method to genomic DNA from mouse parthenogenetic-and androgenetic-derived stem cells and sperm and identified 458 putative DMRs. This included the majority of known DMRs. We further characterized the paternally methylated Zdbf2/ ZDBF2 DMR. In mice, this extensive germ line DMR spanned 16 kb and possessed an unusual tripartite structure. Methylation was dependent on DNA methyltransferase 3a (Dnmt3a), similar to H19 DMR and IG-DMR. In both humans and mice, the adjacent gene, Gpr1/GPR1, which encodes a G-proteincoupled receptor 1 protein with transmembrane domain, was also imprinted and paternally expressed. The Gpr1-Zdbf2 domain was most similar to the Rasgrf1 domain as both DNA methylation and the actively expressed allele were in cis on the paternal chromosome. This work demonstrates the effectiveness of meDIP-on-chip as a technique for identifying DMRs.
AB - The parent-of-origin specific expression of imprinted genes relies on DNA methylation of CpGdinucleotides at differentially methylated regions (DMRs) during gametogenesis. To date, four paternally methylated DMRs have been identified in screens based on conventional approaches. These DMRs are linked to the imprinted genes H19, Gtl2 (IG-DMR), Rasgrf1 and, most recently, Zdbf2 which encodes zinc finger, DBF-type containing 2. In this study, we applied a novel methylated-DNA immunoprecipitation-on-chip (meDIP-on-chip) method to genomic DNA from mouse parthenogenetic-and androgenetic-derived stem cells and sperm and identified 458 putative DMRs. This included the majority of known DMRs. We further characterized the paternally methylated Zdbf2/ ZDBF2 DMR. In mice, this extensive germ line DMR spanned 16 kb and possessed an unusual tripartite structure. Methylation was dependent on DNA methyltransferase 3a (Dnmt3a), similar to H19 DMR and IG-DMR. In both humans and mice, the adjacent gene, Gpr1/GPR1, which encodes a G-proteincoupled receptor 1 protein with transmembrane domain, was also imprinted and paternally expressed. The Gpr1-Zdbf2 domain was most similar to the Rasgrf1 domain as both DNA methylation and the actively expressed allele were in cis on the paternal chromosome. This work demonstrates the effectiveness of meDIP-on-chip as a technique for identifying DMRs.
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U2 - 10.1093/nar/gkq200
DO - 10.1093/nar/gkq200
M3 - Article
C2 - 20385583
AN - SCOPUS:77955347890
SN - 0305-1048
VL - 38
SP - 4929
EP - 4945
JO - Nucleic Acids Research
JF - Nucleic Acids Research
IS - 15
ER -