Alexander Meissner
Affiliations: | Biology, Molecular and Cellular | Harvard University, Cambridge, MA, United States |
Area:
Genetics, Neuroscience BiologyGoogle:
"Alexander Meissner"Mean distance: 35622
Children
Sign in to add traineeCasey Gifford | grad student | 2013 | Harvard |
Jamie O. Webster | grad student | 2014 | Harvard |
Sudhir Thakurela | post-doc | 2016- | Harvard (DevTree) |
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Publications
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Ravid Lustig L, Sampath Kumar A, Schwämmle T, et al. (2023) GATA transcription factors drive initial Xist upregulation after fertilization through direct activation of long-range enhancers. Nature Cell Biology. 25: 1704-1715 |
Hoetker MS, Yagi M, Di Stefano B, et al. (2023) H3K36 methylation maintains cell identity by regulating opposing lineage programmes. Nature Cell Biology |
Weigert R, Hetzel S, Bailly N, et al. (2023) Dynamic antagonism between key repressive pathways maintains the placental epigenome. Nature Cell Biology |
Bolondi A, Kretzmer H, Meissner A. (2022) Single-cell technologies: a new lens into epigenetic regulation in development. Current Opinion in Genetics & Development. 76: 101947 |
Hetzel S, Mattei AL, Kretzmer H, et al. (2022) Acute lymphoblastic leukemia displays a distinct highly methylated genome. Nature Cancer |
Blanco MA, Sykes DB, Gu L, et al. (2021) Chromatin-state barriers enforce an irreversible mammalian cell fate decision. Cell Reports. 37: 109967 |
Andergassen D, Smith ZD, Kretzmer H, et al. (2021) Diverse epigenetic mechanisms maintain parental imprints within the embryonic and extraembryonic lineages. Developmental Cell. 56: 2995-3005.e4 |
Yagi M, Ji F, Charlton J, et al. (2021) Dissecting dual roles of MyoD during lineage conversion to mature myocytes and myogenic stem cells. Genes & Development |
Wu HJ, Landshammer A, Stamenova EK, et al. (2021) Topological isolation of developmental regulators in mammalian genomes. Nature Communications. 12: 4897 |
Gu H, Raman AT, Wang X, et al. (2021) Smart-RRBS for single-cell methylome and transcriptome analysis. Nature Protocols |