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

Plos One
|October 9, 2008
PubMed

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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