Deena Emera, Ph.D.
Affiliations: | 2012 | Yale University, New Haven, CT |
Area:
evolution of complex charactersGoogle:
"Deena Emera"Parents
Sign in to add mentorGünter Wagner | grad student | 2012 | Yale | |
(Transposable elements and host evolution: A case of transposon-mediated regulatory innovation during the evolution of pregnancy.) |
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Publications
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Geller E, Noble MA, Morales M, et al. (2024) Massively parallel disruption of enhancers active in human neural stem cells. Cell Reports. 43: 113693 |
Dutrow EV, Emera D, Yim K, et al. (2022) Modeling uniquely human gene regulatory function via targeted humanization of the mouse genome. Nature Communications. 13: 304 |
Sarro R, Kocher AA, Emera D, et al. (2018) Disrupting the three-dimensional regulatory topology of thelocus results in overtly normal development. Development (Cambridge, England) |
Kin K, Maziarz J, Chavan AR, et al. (2016) The transcriptomic evolution of mammalian pregnancy: gene expression innovations in endometrial stromal fibroblasts. Genome Biology and Evolution |
Emera D, Yin J, Reilly SK, et al. (2016) Origin and evolution of developmental enhancers in the mammalian neocortex. Proceedings of the National Academy of Sciences of the United States of America |
Reilly SK, Yin J, Ayoub AE, et al. (2015) Evolutionary genomics. Evolutionary changes in promoter and enhancer activity during human corticogenesis. Science (New York, N.Y.). 347: 1155-9 |
Lynch VJ, Nnamani MC, Kapusta A, et al. (2015) Ancient transposable elements transformed the uterine regulatory landscape and transcriptome during the evolution of mammalian pregnancy. Cell Reports. 10: 551-61 |
Emera D. (2014) Y.W. Loke, Life's Vital Link: The Astonishing Role of the Placenta. Evolution, Medicine, and Public Health. 2014: 30-1 |
Cotney J, Leng J, Yin J, et al. (2013) The evolution of lineage-specific regulatory activities in the human embryonic limb. Cell. 154: 185-96 |
Emera D, Wagner GP. (2012) Transposable element recruitments in the mammalian placenta: impacts and mechanisms. Briefings in Functional Genomics. 11: 267-76 |