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Methods in Molecular Biology (Clifton, N.J.)|July 7, 2022
Low Input Genome-Wide DNA Methylation Analysis with Minimal Library AmplificationWan Kin Au Yeung, Hiroyuki SasakiEpigenomics|November 3, 2025
Recent advances in methodologies of epigenomicsHiroaki Ohishi, Wan Kin Au YeungBMC Bioinformatics|June 24, 2021
A convolutional neural network-based regression model to infer the epigenetic crosstalk responsible for CG methylation patternsWan Kin Au Yeung, Osamu Maruyama, Hiroyuki SasakiBMC Bioinformatics|September 12, 2022
CMIC: predicting DNA methylation inheritance of CpG islands with embedding vectors of variable-length k-mersOsamu Maruyama, Yinuo Li, Hiroki Narita, et al.Nature Structural & Molecular Biology|November 10, 2020
Reprogramming of the histone H3.3 landscape in the early mouse embryoTakashi Ishiuchi, Shusaku Abe, Kimiko Inoue, et al.Nature Cell Biology|September 7, 2021
Production of functional oocytes requires maternally expressed PIWI genes and piRNAs in golden hamstersHidetoshi Hasuwa, Yuka W Iwasaki, Wan Kin Au Yeung, et al.Plos Genetics|August 1, 2023
The DNMT3A ADD domain is required for efficient de novo DNA methylation and maternal imprinting in mouse oocytesRyuji Uehara, Wan Kin Au Yeung, Keisuke Toriyama, et al.BMC Genomics|April 5, 2024
DPPA3 facilitates genome-wide DNA demethylation in mouse primordial germ cellsKeisuke Toriyama, Wan Kin Au Yeung, Azusa Inoue, et al.Cell Reports|April 4, 2019
Histone H3K9 Methyltransferase G9a in Oocytes Is Essential for Preimplantation Development but Dispensable for CG Methylation ProtectionWan Kin Au Yeung, Julie Brind'Amour, Yu Hatano, et al.Nature Communications|October 28, 2020
Maternal DNMT3A-dependent de novo methylation of the paternal genome inhibits gene expression in the early embryoJulien Richard Albert, Wan Kin Au Yeung, Keisuke Toriyama, et al.Pageof 2