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Human Molecular Genetics|January 6, 2010
CTCF binding is not the epigenetic mark that establishes post-fertilization methylation imprinting in the transgenic H19 ICRHitomi Matsuzaki, Eiichi Okamura, Akiyoshi Fukamizu, et al.
Reproductive Medicine and Biology|June 28, 2023
Similarities and differences in placental development between humans and cynomolgus monkeysShoma Matsumoto, Eiichi Okamura, Masanaga Muto, et al.
Human Molecular Genetics|July 4, 2013
Sox-Oct motifs contribute to maintenance of the unmethylated H19 ICR in YAC transgenic miceRyuuta Sakaguchi, Eiichi Okamura, Hitomi Matsuzaki, et al.
The Journal of Biological Chemistry|March 17, 2010
DNase I hypersensitivity and epsilon-globin transcriptional enhancement are separable in locus control region (LCR) HS1 mutant human beta-globin YAC transgenic miceMotoshi Shimotsuma, Eiichi Okamura, Hitomi Matsuzaki, et al.
Molecular and Cellular Biology|June 24, 2009
A randomly integrated transgenic H19 imprinting control region acquires methylation imprinting independently of its establishment in germ cellsHitomi Matsuzaki, Eiichi Okamura, Motoshi Shimotsuma, et al.
Molecular and Cellular Biology|December 12, 2012
The H19 imprinting control region mediates preimplantation imprinted methylation of nearby sequences in yeast artificial chromosome transgenic miceEiichi Okamura, Hitomi Matsuzaki, Ryuuta Sakaguchi, et al.
Epigenetics & Chromatin|January 16, 2020
Recapitulation of gametic DNA methylation and its post-fertilization maintenance with reassembled DNA elements at the mouse Igf2/H19 locusHitomi Matsuzaki, Daichi Kuramochi, Eiichi Okamura, et al.
FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|August 20, 2009
All of the human beta-type globin genes compete for LCR enhancer activity in embryonic erythroid cells of yeast artificial chromosome transgenic miceEiichi Okamura, Hitomi Matsuzaki, Andrew D Campbell, et al.
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