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Loss of Fam60a, a Sin3a subunit, results in embryonic lethality and is associated with aberrant methylation at a subset of gene promoters.


ABSTRACT: We have examined the role of Fam60a, a gene highly expressed in embryonic stem cells, in mouse development. Fam60a interacts with components of the Sin3a-Hdac transcriptional corepressor complex, and most Fam60a-/- embryos manifest hypoplasia of visceral organs and die in utero. Fam60a is recruited to the promoter regions of a subset of genes, with the expression of these genes being either up- or down-regulated in Fam60a-/- embryos. The DNA methylation level of the Fam60a target gene Adhfe1 is maintained at embryonic day (E) 7.5 but markedly reduced at E9.5 in Fam60a-/- embryos, suggesting that DNA demethylation is enhanced in the mutant. Examination of genome-wide DNA methylation identified several differentially methylated regions, which were preferentially hypomethylated, in Fam60a-/- embryos. Our data suggest that Fam60a is required for proper embryogenesis, at least in part as a result of its regulation of DNA methylation at specific gene promoters.

SUBMITTER: Nabeshima R 

PROVIDER: S-EPMC6072441 | biostudies-literature | 2018 Aug

REPOSITORIES: biostudies-literature

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Loss of Fam60a, a Sin3a subunit, results in embryonic lethality and is associated with aberrant methylation at a subset of gene promoters.

Nabeshima Ryo R   Nishimura Osamu O   Maeda Takako T   Shimizu Natsumi N   Ide Takahiro T   Yashiro Kenta K   Sakai Yasuo Y   Meno Chikara C   Kadota Mitsutaka M   Shiratori Hidetaka H   Kuraku Shigehiro S   Hamada Hiroshi H  

eLife 20180802


We have examined the role of <i>Fam60a</i>, a gene highly expressed in embryonic stem cells, in mouse development. Fam60a interacts with components of the Sin3a-Hdac transcriptional corepressor complex, and most <i>Fam60a</i><sup>-/-</sup> embryos manifest hypoplasia of visceral organs and die in utero. Fam60a is recruited to the promoter regions of a subset of genes, with the expression of these genes being either up- or down-regulated in <i>Fam60a</i><sup>-/-</sup> embryos. The DNA methylation  ...[more]

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