Eric T Wang, Ph.D.

Affiliations: 
2015- Molecular Genetics & Microbiology University of Florida College of Medicine 
Area:
Repeat expansion diseases, RNA processing, RNA localization, Myotonic. Dystrophy
Website:
http://ericwanglab.com
Google:
"Eric Wang"
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Parents

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Christopher B. Burge grad student 2006-2012 MIT (Computational Biology Tree)
David Housman grad student 2006-2012 MIT

Collaborators

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Luke A Knudson collaborator
BETA: Related publications

Publications

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Gibaut QMR, Bush JA, Tong Y, et al. (2023) Transcriptome-Wide Studies of RNA-Targeted Small Molecules Provide a Simple and Selective r(CUG) Degrader in Myotonic Dystrophy. Acs Central Science. 9: 1342-1353
Hildebrandt RP, Moss KR, Janusz-Kaminska A, et al. (2023) Muscleblind-like proteins use modular domains to localize RNAs by riding kinesins and docking to membranes. Nature Communications. 14: 3427
Ellis JA, Hale MA, Cleary JD, et al. (2023) Alternative splicing outcomes across an RNA-binding protein concentration gradient. Journal of Molecular Biology. 168156
Nutter CA, Kidd BM, Carter HA, et al. (2023) Choroid plexus mis-splicing and altered cerebrospinal fluid composition in myotonic dystrophy type 1. Brain : a Journal of Neurology
Wang E, Pineda JMB, Kim WJ, et al. (2022) Modulation of RNA splicing enhances response to BCL2 inhibition in leukemia. Cancer Cell
Kelley CP, Haerle MC, Wang ET. (2022) Negative autoregulation mitigates collateral RNase activity of repeat-targeting CRISPR-Cas13d in mammalian cells. Cell Reports. 40: 111226
Degener MJF, van Cruchten RTP, Otero BA, et al. (2022) A comprehensive atlas of fetal splicing patterns in the brain of adult myotonic dystrophy type 1 patients. Nar Genomics and Bioinformatics. 4: lqac016
Denes LT, Kelley CP, Wang ET. (2021) Microtubule-based transport is essential to distribute RNA and nascent protein in skeletal muscle. Nature Communications. 12: 6079
Lu SX, De Neef E, Thomas JD, et al. (2021) Pharmacologic modulation of RNA splicing enhances anti-tumor immunity. Cell
Malik I, Kelley CP, Wang ET, et al. (2021) Molecular mechanisms underlying nucleotide repeat expansion disorders. Nature Reviews. Molecular Cell Biology
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