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Biochemical Society Transactions|March 22, 2013
A model of the large-scale organization of chromatinMariano Barbieri, Mita Chotalia, James Fraser, et al.Nature Communications|October 12, 2018
Divergent wiring of repressive and active chromatin interactions between mouse embryonic and trophoblast lineagesStefan Schoenfelder, Borbala Mifsud, Claire E Senner, et al.Nature Protocols|September 7, 2013
Oxidative bisulfite sequencing of 5-methylcytosine and 5-hydroxymethylcytosineMichael J Booth, Tobias W B Ost, Dario Beraldi, et al.Genome Biology|November 20, 2016
TET-dependent regulation of retrotransposable elements in mouse embryonic stem cellsLorenzo de la Rica, Özgen Deniz, Kevin C L Cheng, et al.Nucleic Acids Research|December 15, 2021
Locus-specific chromatin profiling of evolutionarily young transposable elementsDarren Taylor, Robert Lowe, Claude Philippe, et al.Nature|April 5, 2011
Dynamic regulation of 5-hydroxymethylcytosine in mouse ES cells and during differentiationGabriella Ficz, Miguel R Branco, Stefanie Seisenberger, et al.Plos One|July 18, 2012
Pairing of homologous regions in the mouse genome is associated with transcription but not imprinting statusChristel Krueger, Michelle R King, Felix Krueger, et al.Journal of Virology|December 23, 2004
Functional analysis of Vif protein shows less restriction of human immunodeficiency virus type 2 by APOBEC3GAna Clara Ribeiro, Alexandra Maia e Silva, Mariana Santa-Marta, et al.Cellular and Molecular Life Sciences : CMLS|October 25, 2019
Tet3 regulates cellular identity and DNA methylation in neural progenitor cellsMafalda Santiago, Claudia Antunes, Marta Guedes, et al.Acta Medica Portuguesa|October 6, 2005
[Multiple gestation epidemiology--15 years survey]Carla T Rodrigues, Miguel R Branco, Isabel D Ferreira, et al.Pageof 14