Erica N. Larschan

Molecular Biology, Cell Biology and Biochemistry Brown University, Providence, RI 
"Erica Larschan"


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Fred Winston grad student 2004 Harvard (PombeTree)
 (Coactivator function during Gal4-activated transcription in Saccharomyces cerevisiae.)


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Jeremy Bigness grad student Brown (MathTree)
Leila E Rieder post-doc 2013-2019 Brown (FlyTree)
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Ray M, Zaborowsky J, Mahableshwarkar P, et al. (2024) Dual DNA/RNA-binding factor regulates dynamics of hnRNP splicing condensates. Biorxiv : the Preprint Server For Biology
Aguilera J, Duan J, Lee SM, et al. (2023) The CLAMP GA-binding transcription factor regulates heat stress-induced transcriptional repression by associating with 3D loop anchors. Biorxiv : the Preprint Server For Biology
Ray M, Conard AM, Urban J, et al. (2023) Sex-specific splicing occurs genome-wide during early embryogenesis. Elife. 12
Calderon D, Blecher-Gonen R, Huang X, et al. (2022) The continuum of embryonic development at single-cell resolution. Science (New York, N.Y.). 377: eabn5800
Bigness J, Loinaz X, Patel S, et al. (2022) Integrating Long-Range Regulatory Interactions to Predict Gene Expression Using Graph Convolutional Networks. Journal of Computational Biology : a Journal of Computational Molecular Cell Biology
Duan J, Rieder L, Colonnetta MM, et al. (2021) CLAMP and Zelda function together to promote zygotic genome activation. Elife. 10
Jordan W, Larschan E. (2021) The zinc finger protein CLAMP promotes long-range chromatin interactions that mediate dosage compensation of the Drosophila male X-chromosome. Epigenetics & Chromatin. 14: 29
Conard AM, Goodman N, Hu Y, et al. (2021) TIMEOR: a web-based tool to uncover temporal regulatory mechanisms from multi-omics data. Nucleic Acids Research
Ray M, Larschan E. (2020) Getting started: altering promoter choice as a mechanism for cell type differentiation. Genes & Development. 34: 619-620
Rieder LE, Jordan WT, Larschan EN. (2019) Targeting of the Dosage-Compensated Male X-Chromosome during Early Drosophila Development. Cell Reports. 29: 4268-4275.e2
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