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Christopher B. Burge

Affiliations: 
Biology Massachusetts Institute of Technology, Cambridge, MA, United States 
Area:
genomics, RNA splicing, and microRNA regulation in vertebrates and invertebrates
Website:
http://genes.mit.edu/burgelab/cburge.html
Google:
"Christopher B. Burge"
Bio:

http://searchworks.stanford.edu/view/5590112
http://www.genealogy.math.ndsu.nodak.edu/id.php?id=144001

Cross-listing: Chemistry Tree

Parents

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Samuel Karlin grad student 1997 Stanford (Evolution Tree)
 (Identification of genes in human genomic DNA)
Phillip Allen Sharp post-doc 1997-1999 MIT (Chemistry Tree)

Children

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Gene W. Yeo grad student 2004 MIT
Eric T Wang grad student 2006-2012 MIT (Neurotree)
Xuebing Wu grad student 2010-2014 MIT
Uwe Ohler post-doc
Qing Feng post-doc 2018- MIT
Zefeng Wang post-doc 2002-2006 (Chemistry Tree)
Xinshu Grace Xiao post-doc 2005-2008 MIT
Robert K. Bradley post-doc 2009-2011 MIT
Jefferson M. Taliaferro post-doc 2013-2017 MIT (Neurotree)
BETA: Related publications

Publications

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Romo L, Findlay SD, Burge CB. (2024) Regulatory features aid interpretation of 3'UTR variants. American Journal of Human Genetics
Gupta K, Yang C, McCue K, et al. (2024) Improved modeling of RNA-binding protein motifs in an interpretable neural model of RNA splicing. Genome Biology. 25: 23
Findlay SD, Romo L, Burge CB. (2024) Quantifying negative selection in human 3' UTRs uncovers constrained targets of RNA-binding proteins. Nature Communications. 15: 85
Feng Q, Krick K, Chu J, et al. (2023) Splicing quality control mediated by DHX15 and its G-patch activator SUGP1. Cell Reports. 42: 113223
Romo L, Findlay SD, Burge CB. (2023) Regulatory features aid interpretation of 3'UTR Variants. Biorxiv : the Preprint Server For Biology
Benoit Bouvrette LP, Wang X, Boulais J, et al. (2022) RBP Image Database: A resource for the systematic characterization of the subcellular distribution properties of human RNA binding proteins. Nucleic Acids Research
Moore JE, Purcaro MJ, Pratt HE, et al. (2022) Author Correction: Expanded encyclopaedias of DNA elements in the human and mouse genomes. Nature
Jourdain AA, Begg BE, Mick E, et al. (2021) Loss of LUC7L2 and U1 snRNP subunits shifts energy metabolism from glycolysis to OXPHOS. Molecular Cell
Van Nostrand EL, Freese P, Pratt GA, et al. (2021) Author Correction: A large-scale binding and functional map of human RNA-binding proteins. Nature
Begg BE, Jens M, Wang PY, et al. (2020) Concentration-dependent splicing is enabled by Rbfox motifs of intermediate affinity. Nature Structural & Molecular Biology
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