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Series GSE99688 Query DataSets for GSE99688
Status Public on Feb 01, 2018
Title iCLIP-based modeling uncovers 3’ splice site definition: how U2AF65 specificity relies on regulation by co-factors [in vivo iCLIP]
Organism Homo sapiens
Experiment type Other
Summary Alternative splicing generates distinct mRNA isoforms and is crucial for proteome diversity in eukaryotes. The RNA-binding protein (RBP) U2AF65 is central to splicing decisions, as it recognizes 3' splice sites and recruits the spliceosome. We established 'in vitro iCLIP' experiments, in which recombinant RBPs are incubated with long transcripts, to study how U2AF65 recognizes RNA sequences and how this is modulated by trans-acting RBPs. We quantitatively measure U2AF65 affinities at hundreds of binding sites, and compare in vitro and in vivo binding landscapes by mathematical modelling. We find that trans-acting RBPs extensively regulate U2AF65 binding in vivo, including enhanced recruitment to 3' splice sites and clearance of intronic regions. Using machine learning, we identify novel trans-acting RBPs (including FUBP1, BRUNOL6 and PCBP1) that modulate U2AF65 binding and affect splicing outcomes. Our study offers a blueprint for the high-throughput characterization of in vitro mRNP assembly and in vivo splicing regulation.
 
Overall design Comparison of in vitro and in vivo iCLIP data of U2AF65 and other regulatory RBPs
 
Contributor(s) Sutandy R, Ebersberger S
Citation(s) 29643205
Submission date Jun 05, 2017
Last update date Jul 25, 2021
Contact name Stefanie Ebersberger
E-mail(s) s.ebersberger@imb-mainz.de
Organization name Institute of Molecular Biology
Lab Koenig Lab
Street address Ackermannweg 4
City Mainz
ZIP/Postal code 55128
Country Germany
 
Platforms (1)
GPL16791 Illumina HiSeq 2500 (Homo sapiens)
Samples (11)
GSM2650194 imb_koenig_2015_12_01_JKRS13_Hela_RT30
GSM2650195 previous_koenig_lujh32-combined_STAR_sample1
GSM2650196 previous_koenig_lujh32-combined_STAR_sample2
This SubSeries is part of SuperSeries:
GSE99700 iCLIP-based modeling uncovers 3’ splice site definition: how U2AF65 specificity relies on regulation by co-factors
Relations
BioProject PRJNA389305
SRA SRP108629

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Supplementary file Size Download File type/resource
GSE99688_RAW.tar 893.4 Mb (http)(custom) TAR (of BW)
SRA Run SelectorHelp
Raw data are available in SRA
Processed data provided as supplementary file

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