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Nature Genetics|May 9, 2024
Systematic epigenome editing captures the context-dependent instructive function of chromatin modificationsCristina Policarpi, Marzia Munafò, Stylianos Tsagkris, et al.
Plos One|October 9, 2008
Identification of nuclear and cytoplasmic mRNA targets for the shuttling protein SF2/ASFJeremy R Sanford, Pedro Coutinho, Jamie A Hackett, et al.
Nature Communications|December 13, 2018
Publisher Correction: Tracing the transitions from pluripotency to germ cell fate with CRISPR screeningJamie A Hackett, Yun Huang, Ufuk Günesdogan, et al.
Nature Communications|October 18, 2018
Tracing the transitions from pluripotency to germ cell fate with CRISPR screeningJamie A Hackett, Yun Huang, Ufuk Günesdogan, et al.
Stem Cell Reports|December 28, 2013
Synergistic mechanisms of DNA demethylation during transition to ground-state pluripotencyJamie A Hackett, Sabine Dietmann, Kazuhiro Murakami, et al.
Elife|November 10, 2015
Chromatin dynamics and the role of G9a in gene regulation and enhancer silencing during early mouse developmentJan J Zylicz, Sabine Dietmann, Ufuk Günesdogan, et al.
Molecular Therapy. Nucleic Acids|April 2, 2025
Papillomavirus-like particles as vectors for ex vivo gene therapy of the skinFrancesco Diversi, Juliette Dabin, Elisa Mazza, et al.
Science (New York, N.Y.)|December 11, 2012
Germline DNA demethylation dynamics and imprint erasure through 5-hydroxymethylcytosineJamie A Hackett, Roopsha Sengupta, Jan J Zylicz, et al.
EMBO Reports|May 15, 2013
Prdm14 promotes germline fate and naive pluripotency by repressing FGF signalling and DNA methylationNils Grabole, Julia Tischler, Jamie A Hackett, et al.
Molecular Cell|July 20, 2014
Dynamic heterogeneity and DNA methylation in embryonic stem cellsZakary S Singer, John Yong, Julia Tischler, et al.
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