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Genome Research|August 5, 2025
H3K27 and H3K9 methylation mask potential CTCF binding sites to maintain 3D genome integrityKei Fukuda, Chikako Shimura, Yoichi ShinkaiEpigenetics & Chromatin|May 1, 2025
H3K27me3 and the PRC1-H2AK119ub pathway cooperatively maintain heterochromatin and transcriptional silencing after the loss of H3K9 methylationKei Fukuda, Chikako Shimura, Yoichi ShinkaiGenome Research|May 6, 2018
A CRISPR knockout screen identifies SETDB1-target retroelement silencing factors in embryonic stem cellsKei Fukuda, Akihiko Okuda, Kosuke Yusa, et al.Epigenetics & Chromatin|December 1, 2020
The fibronectin type-III (FNIII) domain of ATF7IP contributes to efficient transcriptional silencing mediated by the SETDB1 complexTakeshi Tsusaka, Kei Fukuda, Chikako Shimura, et al.Genes to Cells : Devoted to Molecular & Cellular Mechanisms|December 9, 2025
Chromatin Landscape of Saccharomyces cerevisiae Acquiring H3K9 Methylation and Its Reader Molecule HP1Taiki Shimizu, Kei Fukuda, Chikako Shimura, et al.Elife|March 22, 2022
Potential role of KRAB-ZFP binding and transcriptional states on DNA methylation of retroelements in human male germ cellsKei Fukuda, Yoshinori Makino, Satoru Kaneko, et al.Communications Biology|May 14, 2021
Regulation of mammalian 3D genome organization and histone H3K9 dimethylation by H3K9 methyltransferasesKei Fukuda, Chikako Shimura, Hisashi Miura, et al.Genome Research|June 29, 2026
Resf1 is required for proper placental development and configuration of trophoblast cell-specific heterochromatinKei Fukuda, Kimiko Inoue, Chikako Shimura, et al.Pageof 16