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Published on: May 16, 2017
Identification of nuclear and cytoplasmic mRNA targets for the shuttling protein SF2/ASF
Jeremy R Sanford1, Pedro Coutinho, Jamie A Hackett
1MRC Human Genetics Unit, Western General Hospital, Edinburgh, UK. sanford@biology.ucsc.edu
Abstract:
The serine and arginine-rich protein family (SR proteins) are highly conserved regulators of pre-mRNA splicing. SF2/ASF, a prototype member of the SR protein family, is a multifunctional RNA binding protein with roles in pre-mRNA splicing, mRNA export and mRNA translation. These observations suggest the intriguing hypothesis that SF2/ASF may couple splicing and translation of specific mRNA targets in vivo. Unfortunately the paucity of endogenous mRNA targets for SF2/ASF has hindered testing of this hypothesis. Here, we identify endogenous mRNAs directly cross-linked to SF2/ASF in different sub-cellular compartments. Cross-Linking Immunoprecipitation (CLIP) captures the in situ specificity of protein-RNA interaction and allows for the simultaneous identification of endogenous RNA targets as well as the locations of binding sites within the RNA transcript. Using the CLIP method we identified 326 binding sites for SF2/ASF in RNA transcripts from 180 protein coding genes. A purine-rich consensus motif was identified in binding sites located within exon sequences but not introns. Furthermore, 72 binding sites were occupied by SF2/ASF in different sub-cellular fractions suggesting that these binding sites may influence the splicing or translational control of endogenous mRNA targets. We demonstrate that ectopic expression of SF2/ASF regulates the splicing and polysome association of transcripts derived from the SFRS1, PABC1, NETO2 and ENSA genes. Taken together the data presented here indicate that SF2/ASF has the capacity to co-regulate the nuclear and cytoplasmic processing of specific mRNAs and provide further evidence that the nuclear history of an mRNA may influence its cytoplasmic fate.
Insights
SF2/ASF protein regulates both mRNA splicing and translation. This study identified specific mRNA targets and binding sites, revealing SF2/ASF
Area of Science:
- Molecular Biology
- RNA Biology
- Gene Regulation
Background:
- Serine and arginine-rich (SR) proteins are crucial for pre-mRNA splicing.
- SF2/ASF is a key SR protein involved in splicing, mRNA export, and translation.
- Understanding SF2/ASF's endogenous mRNA targets is vital to test its role in coupling splicing and translation.
Purpose of the Study:
- To identify endogenous mRNA targets of SF2/ASF.
- To investigate the sub-cellular localization of SF2/ASF binding sites.
- To determine if SF2/ASF couples nuclear and cytoplasmic mRNA processing.
Main Methods:
- Cross-Linking Immunoprecipitation (CLIP) to capture in situ protein-RNA interactions.
- Identification of SF2/ASF binding sites on endogenous RNA transcripts.
- Analysis of binding site motifs and sub-cellular distribution.
Main Results:
- Identified 326 SF2/ASF binding sites across 180 protein-coding genes.
- Discovered a purine-rich consensus motif in exonic binding sites.
- Found 72 SF2/ASF binding sites in different sub-cellular compartments, suggesting regulatory roles.
Conclusions:
- SF2/ASF binds to specific endogenous mRNA targets in various cellular locations.
- SF2/ASF can co-regulate the nuclear and cytoplasmic processing of specific mRNAs.
- The nuclear processing of mRNA may influence its subsequent cytoplasmic fate.
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