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Quantitative analysis of human tissue-specific differences in methylation.


ABSTRACT: Tissue-specific differentially methylated regions (tDMRs) have been identified and implicated for their indispensable involvement in mammalian development and tissue differentiation. In this report, a quantitative DNA methylation analysis was performed for 13 human orthologous regions of recently confirmed mouse tDMRs by using Sequenom Mass Array, by which bisulfite-treated fragments are quantitatively detected using time of flight mass spectroscopy analysis. Eight regions were shown as tDMRs in various tissues from three independent individuals. Testis DNA samples from eight individuals were also analyzed for methylation. Interestingly, there is evidence that the DNA methylation level is divergent among individuals. DNA methylation levels of five testis-specific DMRs were significantly inversely correlated with the number of spermatocytes. However, a positive correlation was seen at tDMRs located near the TRIM38 and CASZ1 genes. Our results indicate that tDMRs are conserved between mouse and human and may have an important role in regulating tissue function, differentiation, and aging.

SUBMITTER: Igarashi J 

PROVIDER: S-EPMC2613005 | biostudies-literature | 2008 Nov

REPOSITORIES: biostudies-literature

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Quantitative analysis of human tissue-specific differences in methylation.

Igarashi Jun J   Muroi Satomi S   Kawashima Hiroyuki H   Wang Xiaofei X   Shinojima Yui Y   Kitamura Eiko E   Oinuma Toshinori T   Nemoto Norimichi N   Song Fei F   Ghosh Srimoyee S   Held William A WA   Nagase Hiroki H  

Biochemical and biophysical research communications 20080919 4


Tissue-specific differentially methylated regions (tDMRs) have been identified and implicated for their indispensable involvement in mammalian development and tissue differentiation. In this report, a quantitative DNA methylation analysis was performed for 13 human orthologous regions of recently confirmed mouse tDMRs by using Sequenom Mass Array, by which bisulfite-treated fragments are quantitatively detected using time of flight mass spectroscopy analysis. Eight regions were shown as tDMRs in  ...[more]

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