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Nature Structural & Molecular Biology|June 24, 2020
Dppa2 and Dppa4 counteract de novo methylation to establish a permissive epigenome for developmentKristjan H Gretarsson, Jamie A HackettCell Stem Cell|October 4, 2014
Regulatory principles of pluripotency: from the ground state upJamie A Hackett, M Azim SuraniPhilosophical Transactions of the Royal Society of London. Series B, Biological Sciences|November 21, 2012
DNA methylation dynamics during the mammalian life cycleJamie A Hackett, M Azim SuraniCell|May 14, 2013
Beyond DNA: programming and inheritance of parental methylomesJamie A Hackett, M Azim SuraniThe EMBO Journal|February 24, 2022
Epigenetic inheritance is gated by naïve pluripotency and Dppa2Valentina Carlini, Cristina Policarpi, Jamie A HackettBioessays : News and Reviews in Molecular, Cellular and Developmental Biology|March 16, 2021
Epigenetic editing: Dissecting chromatin function in contextCristina Policarpi, Juliette Dabin, Jamie A HackettMethods in Molecular Biology (Clifton, N.J.)|September 18, 2020
Genome-Scale CRISPR Screening for Regulators of Cell Fate TransitionsValentina Carlini, Kristjan H Gretarsson, Jamie A HackettTrends in Genetics : TIG|March 6, 2012
Parallel mechanisms of epigenetic reprogramming in the germlineJamie A Hackett, Jan J Zylicz, M Azim SuraniStem Cell Reports|June 8, 2017
Activation of Lineage Regulators and Transposable Elements across a Pluripotent SpectrumJamie A Hackett, Toshihiro Kobayashi, Sabine Dietmann, et al.Development (Cambridge, England)|February 29, 2008
xDnmt1 regulates transcriptional silencing in pre-MBT Xenopus embryos independently of its catalytic functionDonncha S Dunican, Alexey Ruzov, Jamie A Hackett, et al.Pageof 4