Casey Gifford, Ph.D.
Affiliations: | 2013 | Biology: Medical Sciences, Division of | Harvard University, Cambridge, MA, United States |
Area:
General Biology, Molecular Biology, Cell BiologyGoogle:
"Casey Gifford"Mean distance: 42746.4
Parents
Sign in to add mentorAlexander Meissner | grad student | 2013 | Harvard | |
(Transcriptional and epigenetic dynamics observed during lineage specification of human embryonic stem cells.) |
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Publications
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Stone NR, Gifford CA, Thomas R, et al. (2019) Context-Specific Transcription Factor Functions Regulate Epigenomic and Transcriptional Dynamics during Cardiac Reprogramming. Cell Stem Cell. 25: 87-102.e9 |
Donaghey J, Thakurela S, Charlton J, et al. (2018) Genetic determinants and epigenetic effects of pioneer-factor occupancy. Nature Genetics |
Aguilar CA, Pop R, Shcherbina A, et al. (2016) Transcriptional and Chromatin Dynamics of Muscle Regeneration after Severe Trauma. Stem Cell Reports |
Tsankov AM, Akopian V, Pop R, et al. (2015) A qPCR ScoreCard quantifies the differentiation potential of human pluripotent stem cells. Nature Biotechnology. 33: 1182-92 |
Aguilar CA, Shcherbina A, Ricke DO, et al. (2015) In vivo Monitoring of Transcriptional Dynamics After Lower-Limb Muscle Injury Enables Quantitative Classification of Healing. Scientific Reports. 5: 13885 |
Cacchiarelli D, Trapnell C, Ziller MJ, et al. (2015) Integrative Analyses of Human Reprogramming Reveal Dynamic Nature of Induced Pluripotency. Cell. 162: 412-424 |
Liao J, Karnik R, Gu H, et al. (2015) Targeted disruption of DNMT1, DNMT3A and DNMT3B in human embryonic stem cells. Nature Genetics. 47: 469-78 |
Ziller MJ, Edri R, Yaffe Y, et al. (2015) Dissecting neural differentiation regulatory networks through epigenetic footprinting. Nature. 518: 355-9 |
Gifford CA, Ziller MJ, Gu H, et al. (2013) Transcriptional and epigenetic dynamics during specification of human embryonic stem cells. Cell. 153: 1149-63 |
Gifford CA, Meissner A. (2012) Epigenetic obstacles encountered by transcription factors: reprogramming against all odds. Current Opinion in Genetics & Development. 22: 409-15 |