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The influence of microRNAs and poly(A) tail length on endogenous mRNA-protein complexes

Genome Biology, ISSN: 1474-760X, Vol: 18, Issue: 1, Page: 211
2017
  • 42
    Citations
  • 0
    Usage
  • 141
    Captures
  • 0
    Mentions
  • 72
    Social Media
Metric Options:   Counts1 Year3 Year

Metrics Details

  • Citations
    42
  • Captures
    141
  • Social Media
    72
    • Shares, Likes & Comments
      72
      • Facebook
        72

Article Description

Background: All mRNAs are bound in vivo by proteins to form mRNA-protein complexes (mRNPs), but changes in the composition of mRNPs during posttranscriptional regulation remain largely unexplored. Here, we have analyzed, on a transcriptome-wide scale, how microRNA-mediated repression modulates the associations of the core mRNP components eIF4E, eIF4G, and PABP and of the decay factor DDX6 in human cells. Results: Despite the transient nature of repressed intermediates, we detect significant changes in mRNP composition, marked by dissociation of eIF4G and PABP, and by recruitment of DDX6. Furthermore, although poly(A)-tail length has been considered critical in post-transcriptional regulation, differences in steady-state tail length explain little of the variation in either PABP association or mRNP organization more generally. Instead, relative occupancy of core components correlates best with gene expression. Conclusions: These results indicate that posttranscriptional regulatory factors, such as microRNAs, influence the associations of PABP and other core factors, and do so without substantially affecting steady-state tail length.

Bibliographic Details

Rissland, Olivia S.; Subtelny, Alexander O.; Wang, Miranda; Lugowski, Andrew; Nicholson, Beth; Laver, John D.; Sidhu, Sachdev S.; Smibert, Craig A.; Lipshitz, Howard D.; Bartel, David P.

Springer Science and Business Media LLC

Agricultural and Biological Sciences; Biochemistry, Genetics and Molecular Biology

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