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Nature Genetics|August 26, 2003
Asymmetric regulation of imprinting on the maternal and paternal chromosomes at the Dlk1-Gtl2 imprinted cluster on mouse chromosome 12Shau-Ping Lin, Neil Youngson, Shuji Takada, et al.Nature Communications|April 14, 2019
TET3 prevents terminal differentiation of adult NSCs by a non-catalytic action at SnrpnRaquel Montalbán-Loro, Anna Lozano-Ureña, Mitsuteru Ito, et al.Nature|May 25, 2007
Stability and flexibility of epigenetic gene regulation in mammalian developmentWolf ReikNature Reviews. Genetics|July 19, 2011
Genomic imprinting: the emergence of an epigenetic paradigmAnne C Ferguson-SmithNature Reviews. Genetics|April 9, 2005
Co-evolution of X-chromosome inactivation and imprinting in mammalsWolf Reik, Annabelle LewisElife|October 23, 2018
The discovery and importance of genomic imprintingAnne C Ferguson-Smith, Deborah Bourc'hisBriefings in Functional Genomics|July 5, 2012
Proteins involved in establishment and maintenance of imprinted methylation marksRuslan Strogantsev, Anne C Ferguson-SmithCurrent Biology : CB|February 13, 2002
Epigenetics: monoallelic expression in the immune systemCristina Rada, Anne C Ferguson-SmithWiley Interdisciplinary Reviews. Systems Biology and Medicine|December 27, 2019
The evolution of genomic imprinting: Epigenetic control of mammary gland development and postnatal resource controlGeula Hanin, Anne C Ferguson-SmithPageof 32