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Science (New York, N.Y.)|July 12, 2014
In utero effects. In utero undernourishment perturbs the adult sperm methylome and intergenerational metabolismElizabeth J Radford, Mitsuteru Ito, Hui Shi, et al.Cell Stem Cell|June 7, 2014
Reprogramming the methylome: erasing memory and creating diversityHeather J Lee, Timothy A Hore, Wolf ReikMolecular and Cellular Biology|June 17, 2004
Tandem repeat hypothesis in imprinting: deletion of a conserved direct repeat element upstream of H19 has no effect on imprinting in the Igf2-H19 regionAnnabelle Lewis, Kohzoh Mitsuya, Miguel Constancia, et al.Developmental Biology|January 11, 2002
Dynamic reprogramming of DNA methylation in the early mouse embryoFátima Santos, Brian Hendrich, Wolf Reik, et al.Human Molecular Genetics|October 4, 2007
Status of genomic imprinting in human embryonic stem cells as revealed by a large cohort of independently derived and maintained linesPeter J Rugg-Gunn, Anne C Ferguson-Smith, Roger A PedersenReproduction (Cambridge, England)|September 14, 2011
Epigenetic reprogramming: is deamination key to active DNA demethylation?Marta Teperek-Tkacz, Vincent Pasque, George Gentsch, et al.Genome Biology|November 9, 2018
Simulation-based benchmarking of isoform quantification in single-cell RNA-seqJennifer Westoby, Marcela Sjöberg Herrera, Anne C Ferguson-Smith, et al.Journal of Molecular Evolution|September 13, 2005
A small family of sushi-class retrotransposon-derived genes in mammals and their relation to genomic imprintingNeil A Youngson, Sylvia Kocialkowski, Nina Peel, et al.Annual Review of Genomics and Human Genetics|June 6, 2014
Phenotypic outcomes of imprinted gene models in mice: elucidation of pre- and postnatal functions of imprinted genesMary A M Cleaton, Carol A Edwards, Anne C Ferguson-SmithCell|February 23, 2019
Genomic Imprinting and Physiological Processes in MammalsValter Tucci, Anthony R Isles, Gavin Kelsey, et al.Pageof 32