TY - JOUR
T1 - Epigenetic marks by DNA methylation specific to stem, germ and somatic cells in mice
AU - Shiota, Kunio
AU - Kogo, Yasushi
AU - Ohgane, Jun
AU - Imamura, Takuya
AU - Urano, Atsushi
AU - Nishino, Koichiro
AU - Tanaka, Satoshi
AU - Hattori, Naka
N1 - Copyright:
Copyright 2008 Elsevier B.V., All rights reserved.
PY - 2002/9
Y1 - 2002/9
N2 - Background: DNA methylation is involved in many gene functions such as gene-silencing, X-inactivation, imprinting and stability of the gene. We recently found that some CpG islands had a tissue-dependent and differentially methylated region (T-DMR) in normal tissues, raising the possibility that there may be more CpG islands capable of differential methylation. Results: We investigated the genome-wide DNA methylation pattern of CpG islands by restriction landmark genomic scanning (RLGS) in mouse stem cells (ES, EG and trophoblast stem) before and after differentiation, and sperm as well as somatic tissues. A total of 247 spots out of 1500 (16%) showed differences in the appearance of their RLGS profiles, indicating that CpG islands having T-DMR were numerous and widespread. The methylation pattern was specific, and varied in a precise manner according to cell lineage, tissue type and during cell differentiation. Conclusions: Genomic loci with altered methylation status seem to be more common than has hitherto been realized. The formation of DNA methylation patterns at CpG islands is one of the epigenetic events which underlies the production of various cell types in the body. These findings should have implications for the use of embryonic stem cells and cells derived from them therapeutically, and also for the cloning of animals by the transfer of somatic cell nuclei.
AB - Background: DNA methylation is involved in many gene functions such as gene-silencing, X-inactivation, imprinting and stability of the gene. We recently found that some CpG islands had a tissue-dependent and differentially methylated region (T-DMR) in normal tissues, raising the possibility that there may be more CpG islands capable of differential methylation. Results: We investigated the genome-wide DNA methylation pattern of CpG islands by restriction landmark genomic scanning (RLGS) in mouse stem cells (ES, EG and trophoblast stem) before and after differentiation, and sperm as well as somatic tissues. A total of 247 spots out of 1500 (16%) showed differences in the appearance of their RLGS profiles, indicating that CpG islands having T-DMR were numerous and widespread. The methylation pattern was specific, and varied in a precise manner according to cell lineage, tissue type and during cell differentiation. Conclusions: Genomic loci with altered methylation status seem to be more common than has hitherto been realized. The formation of DNA methylation patterns at CpG islands is one of the epigenetic events which underlies the production of various cell types in the body. These findings should have implications for the use of embryonic stem cells and cells derived from them therapeutically, and also for the cloning of animals by the transfer of somatic cell nuclei.
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U2 - 10.1046/j.1365-2443.2002.00574.x
DO - 10.1046/j.1365-2443.2002.00574.x
M3 - Article
C2 - 12296826
AN - SCOPUS:0036734599
SN - 1356-9597
VL - 7
SP - 961
EP - 969
JO - Genes to Cells
JF - Genes to Cells
IS - 9
ER -