Christopher P Davis, Ph.D.
Affiliations: | Harvard Medical School, Boston, MA, United States |
Area:
Molecular biology, gene expression, chromatin, neurodevelopmentGoogle:
"Christopher Davis"Mean distance: (not calculated yet)
Parents
Sign in to add mentorKaren Marie Arndt | research assistant | 2008-2011 | University of Pittsburgh (Chemistry Tree) |
Robert E. Kingston | grad student | 2011-2017 | Harvard Medical School - Massachusetts General Hospital (Chemistry Tree) |
Michael E. Greenberg | post-doc | 2018- | Harvard Medical School |
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Publications
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Pollina EA, Gilliam DT, Landau AT, et al. (2023) A NPAS4-NuA4 complex couples synaptic activity to DNA repair. Nature |
Yap EL, Pettit NL, Davis CP, et al. (2021) Bidirectional perisomatic inhibitory plasticity of a Fos neuronal network. Nature. 590: 115-121 |
Yap EL, Pettit NL, Davis CP, et al. (2020) Bidirectional perisomatic inhibitory plasticity of a Fos neuronal network. Nature |
Stroud H, Yang MG, Tsitohay YN, et al. (2020) An Activity-Mediated Transition in Transcription in Early Postnatal Neurons. Neuron. 107: 874-890 |
Stroud H, Yang MG, Tsitohay YN, et al. (2020) An Activity-Mediated Transition in Transcription in Early Postnatal Neurons. Neuron |
Plys AJ, Davis CP, Kim J, et al. (2019) Phase separation of Polycomb-repressive complex 1 is governed by a charged disordered region of CBX2. Genes & Development |
Ray MK, Wiskow O, King MJ, et al. (2016) CAT7 and cat7l long non-coding RNAs Tune Polycomb Repressive Complex 1 Function During Human and Zebrafish Development. The Journal of Biological Chemistry |
Ray MK, Wiskow O, King MJ, et al. (2016) CAT7 and cat7l Long Non-coding RNAs Tune Polycomb Repressive Complex 1 Function during Human and Zebrafish Development. Journal of Biological Chemistry. 291: 19558-72 |
Davis CP, West JA. (2015) Purification of specific chromatin regions using oligonucleotides: capture hybridization analysis of RNA targets (CHART). Methods in Molecular Biology (Clifton, N.J.). 1262: 167-82 |
West JA, Davis CP, Sunwoo H, et al. (2014) The long noncoding RNAs NEAT1 and MALAT1 bind active chromatin sites. Molecular Cell. 55: 791-802 |