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Nature Communications|December 14, 2019
Evolution of imprinting via lineage-specific insertion of retroviral promotersAaron B Bogutz, Julie Brind'Amour, Hisato Kobayashi, et al.
Cell|July 17, 2007
RNA polymerase II: just stopping byMatthew C Lorincz, Dirk Schübeler
Methods in Molecular Biology (Clifton, N.J.)|June 22, 2022
Profiling Histone Methylation in Low Numbers of CellsJulie Brind'Amour, Matthew C Lorincz
Developmental Cell|November 8, 2017
Evidence for Converging DNA Methylation Pathways in Placenta and CancerMatthew C Lorincz, Dirk Schübeler
Trends in Biochemical Sciences|December 20, 2011
Silencing of endogenous retroviruses: when and why do histone marks predominate?Danny C Leung, Matthew C Lorincz
Nature Genetics|June 29, 2017
Epigenetic modifier drugs trigger widespread transcription of endogenous retrovirusesDixie L Mager, Matthew C Lorincz
Nature Reviews. Genetics|October 5, 2021
Interplay between chromatin marks in development and diseaseSanne M Janssen, Matthew C Lorincz
Trends in Biochemical Sciences|March 14, 2009
H2A.Z and DNA methylation: irreconcilable differencesMichael S Kobor, Matthew C Lorincz
Journal of Theoretical Biology|June 30, 2006
Dynamics, stability and inheritance of somatic DNA methylation imprintsLaura B Sontag, Matthew C Lorincz, E Georg Luebeck
Molecular Cell|June 4, 2016
Long Terminal Repeats: From Parasitic Elements to Building Blocks of the Transcriptional Regulatory RepertoirePeter J Thompson, Todd S Macfarlan, Matthew C Lorincz
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