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Keith W Dunaway

Showing results (1-10 of 10) with videos related to

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Molecular and Cellular Biology|May 23, 2012
Phosphorylation of distinct sites in MeCP2 modifies cofactor associations and the dynamics of transcriptional regulationMichael L Gonzales, Sarrita Adams, Keith W Dunaway, et al.
Molecular Autism|January 29, 2013
MeCP2 modulates gene expression pathways in astrocytesDag H Yasui, Huichun Xu, Keith W Dunaway, et al.
Epigenetics|January 6, 2017
A comparison of existing global DNA methylation assays to low-coverage whole-genome bisulfite sequencing for epidemiological studiesFlorence K Crary-Dooley, Mitchell E Tam, Keith W Dunaway, et al.
Human Molecular Genetics|August 16, 2011
15q11.2-13.3 chromatin analysis reveals epigenetic regulation of CHRNA7 with deficiencies in Rett and autism brainDag H Yasui, Haley A Scoles, Shin-Ichi Horike, et al.
Nature Communications|April 26, 2018
Snord116-dependent diurnal rhythm of DNA methylation in mouse cortexRochelle L Coulson, Dag H Yasui, Keith W Dunaway, et al.
Human Molecular Genetics|April 23, 2019
Placental DNA methylation levels at CYP2E1 and IRS2 are associated with child outcome in a prospective autism studyYihui Zhu, Charles E Mordaunt, Dag H Yasui, et al.
Journal of Human Genetics|May 20, 2011
Investigation of modifier genes within copy number variations in Rett syndromeRosangela Artuso, Filomena T Papa, Elisa Grillo, et al.
Epigenetics|April 4, 2018
Experience-dependent neuroplasticity of the developing hypothalamus: integrative epigenomic approachesAnnie Vogel Ciernia, Benjamin I Laufer, Keith W Dunaway, et al.
Cell Reports|December 16, 2016
Cumulative Impact of Polychlorinated Biphenyl and Large Chromosomal Duplications on DNA Methylation, Chromatin, and Expression of Autism Candidate GenesKeith W Dunaway, M Saharul Islam, Rochelle L Coulson, et al.
Genome Medicine|October 15, 2020
Cord blood DNA methylome in newborns later diagnosed with autism spectrum disorder reflects early dysregulation of neurodevelopmental and X-linked genesCharles E Mordaunt, Julia M Jianu, Benjamin I Laufer, et al.
Pageof 1

Showing results (1-10 of 10) with videos related to

Sort By:
Pageof 1
Molecular and Cellular Biology|May 23, 2012
Phosphorylation of distinct sites in MeCP2 modifies cofactor associations and the dynamics of transcriptional regulationMichael L Gonzales, Sarrita Adams, Keith W Dunaway, et al.
Molecular Autism|January 29, 2013
MeCP2 modulates gene expression pathways in astrocytesDag H Yasui, Huichun Xu, Keith W Dunaway, et al.
Epigenetics|January 6, 2017
A comparison of existing global DNA methylation assays to low-coverage whole-genome bisulfite sequencing for epidemiological studiesFlorence K Crary-Dooley, Mitchell E Tam, Keith W Dunaway, et al.
Human Molecular Genetics|August 16, 2011
15q11.2-13.3 chromatin analysis reveals epigenetic regulation of CHRNA7 with deficiencies in Rett and autism brainDag H Yasui, Haley A Scoles, Shin-Ichi Horike, et al.
Nature Communications|April 26, 2018
Snord116-dependent diurnal rhythm of DNA methylation in mouse cortexRochelle L Coulson, Dag H Yasui, Keith W Dunaway, et al.
Human Molecular Genetics|April 23, 2019
Placental DNA methylation levels at CYP2E1 and IRS2 are associated with child outcome in a prospective autism studyYihui Zhu, Charles E Mordaunt, Dag H Yasui, et al.
Journal of Human Genetics|May 20, 2011
Investigation of modifier genes within copy number variations in Rett syndromeRosangela Artuso, Filomena T Papa, Elisa Grillo, et al.
Epigenetics|April 4, 2018
Experience-dependent neuroplasticity of the developing hypothalamus: integrative epigenomic approachesAnnie Vogel Ciernia, Benjamin I Laufer, Keith W Dunaway, et al.
Cell Reports|December 16, 2016
Cumulative Impact of Polychlorinated Biphenyl and Large Chromosomal Duplications on DNA Methylation, Chromatin, and Expression of Autism Candidate GenesKeith W Dunaway, M Saharul Islam, Rochelle L Coulson, et al.
Genome Medicine|October 15, 2020
Cord blood DNA methylome in newborns later diagnosed with autism spectrum disorder reflects early dysregulation of neurodevelopmental and X-linked genesCharles E Mordaunt, Julia M Jianu, Benjamin I Laufer, et al.
Pageof 1