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The insulin receptor cellular IRES confers resistance to eIF4A inhibition.

Calla M Olson | Marissa R Donovan | Michael J Spellberg | Michael T Marr
eLife | 2013

Under conditions of stress, such as limited growth factor signaling, translation is inhibited by the action of 4E-BP and PDCD4. These proteins, through inhibition of eIF4E and eIF4A, respectively, impair cap-dependent translation. Under stress conditions FOXO transcription factors activate 4E-BP expression amplifying the repression. Here we show that Drosophila FOXO binds the PDCD4 promoter and stimulates the transcription of PDCD4 in response to stress. We have shown previously that the 5' UTR of the Drosophila insulin-like receptor (dINR) supports cap-independent translation that is resistant to 4E-BP. Using hippuristanol, an eIF4A inhibitor, we find that translation of dINR UTR containing transcripts are also resistant to eIF4A inhibition. In addition, the murine insulin receptor and insulin-like growth factor receptor 5' UTRs support cap-independent translation and have a similar resistance to hippuristanol. This resistance to inhibition of eIF4E and eIF4A indicates a conserved strategy to allow translation of growth factor receptors under stress conditions. DOI:http://dx.doi.org/10.7554/eLife.00542.001.

Pubmed ID: 23878722

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Associated grants

  • Agency: NIGMS NIH HHS, United States
    Id: T32 GM007122

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NIH 3T3 (tool)

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Cell line NIH 3T3 is a Spontaneously immortalized cell line with a species of origin Mus musculus

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Canton-S (tool)

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Drosophila melanogaster with name Canton-S from BDSC.

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NIH 3T3 (tool)

RRID:CVCL_0594

Cell line NIH 3T3 is a Spontaneously immortalized cell line with a species of origin Mus musculus

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