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Nature Genetics|May 3, 2005
Epigenetic status of human embryonic stem cellsPeter J Rugg-Gunn, Anne C Ferguson-Smith, Roger A Pedersen
Cell Cycle (Georgetown, Tex.)|October 6, 2005
Human embryonic stem cells as a model for studying epigenetic regulation during early developmentPeter J Rugg-Gunn, Anne C Ferguson-Smith, Roger A Pedersen
The American Journal of Pathology|May 18, 2013
Syncytial knots (Tenney-Parker changes) in the human placenta: evidence of loss of transcriptional activity and oxidative damageNorah M E Fogarty, Anne C Ferguson-Smith, Graham J Burton
Genome Biology|April 12, 2017
DeepCpG: accurate prediction of single-cell DNA methylation states using deep learningChristof Angermueller, Heather J Lee, Wolf Reik, et al.
Current Opinion in Cell Biology|March 21, 2012
Shifting behaviour: epigenetic reprogramming in eusocial insectsSolenn Patalano, Timothy A Hore, Wolf Reik, et al.
Nature Reviews. Molecular Cell Biology|April 25, 2018
Dynamics of the epigenetic landscape during the maternal-to-zygotic transitionMelanie A Eckersley-Maslin, Celia Alda-Catalinas, Wolf Reik
STAR Protocols|April 26, 2021
Pooled CRISPR-activation screening coupled with single-cell RNA-seq in mouse embryonic stem cellsCelia Alda-Catalinas, Melanie A Eckersley-Maslin, Wolf Reik
Molecular and Cellular Biology|June 2, 2011
Nonallelic transcriptional roles of CTCF and cohesins at imprinted lociShu Lin, Anne C Ferguson-Smith, Richard M Schultz, et al.
Human Molecular Genetics|August 23, 2006
Complementary roles of genes regulated by two paternally methylated imprinted regions on chromosomes 7 and 12 in mouse placentationManabu Kawahara, Qiong Wu, Yukio Yaguchi, et al.
Reproduction, Fertility, and Development|January 8, 2019
The origins of genomic imprinting in mammalsCarol A Edwards, Nozomi Takahashi, Jennifer A Corish, et al.
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