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E-GEOD-58871 SRP043621, GSE58871 RNA-seq of coding RNA Homo sapiens

U2AF1 mutations alter splice site recognition in hematological malignancies

·Released Sept. 23, 2014 ·Updated Dec. 10, 2014
7
Samples
7
Assays
1
References
Description

Whole-exome sequencing studies have identified common mutations affecting genes encoding components of the RNA splicing machinery in hematological malignancies. Here, we sought to determine how mutations affecting the 3' splice site recognition factor U2AF1 altered its normal role in RNA splicing. We find that U2AF1 mutations influence the similarity of splicing programs in leukemias, but do not give rise to widespread splicing failure. U2AF1 mutations cause differential splicing of hundreds of genes, affecting biological pathways implicated in myeloid disease such as DNA methylation (DNMT3B), X chromosome inactivation (H2AFY), the DNA damage response (ATR, FANCA), and apoptosis (CASP8). We show that U2AF1 mutations alter the preferred 3' splice site motif in vivo, in cell culture, and in vitro. Mutations affecting the first and second zinc fingers give rise to different alterations in splice site preference and largely distinct downstream splicing programs. These allele-specific effects are consistent with a computationally predicted model of U2AF1 in complex with RNA. Our findings suggest that U2AF1 mutations contribute to pathogenesis by causing quantitative changes in splicing that affect diverse cellular pathways, and give insight into the normal function of U2AF1’s zinc finger domains. mRNA profiles of K562 cells expressing U2AF1 WT, mutants and knockdown of U2AF1 generated by deep sequencing.

References
U2AF1 mutations alter splice site recognition in hematological malignancies.
Ilagan JO, Ramakrishnan A, Hayes B, Murphy ME, Zebari AS, Bradley P, Bradley RK
PMID: 25267526
Sample Attributes
cell line
K562 erythroleukemia cell line
genotype
scramble (knockdown control), U2AF1 knockdown, U2AF1_Q157P, U2AF1_Q157R, U2AF1_S34F, U2AF1_S34Y, U2AF1_WT
organism
Homo sapiens
Experiment Info
Accession
E-GEOD-58871
GEO ID
SRP043621, GSE58871
Type
RNA-seq of coding RNA
Organism
Homo sapiens
Released
Sept. 23, 2014
Updated
Dec. 10, 2014
Submitter
Robert K Bradley、 Michele E Murphy、 Philip Bradley、 Ahmad S Zebari、 Janine O Ilagan、 Aravind Ramakrishnan、 Janine O Ilagan、 Brian Hayes
Analysis Services
Analysis Services

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