4.8 Article

Translational control of E2f1 regulates the Drosophila cell cycle

出版社

NATL ACAD SCIENCES
DOI: 10.1073/pnas.2113704119

关键词

E2F1; translational control; uORF; cell cycle; TOR

资金

  1. Huntsman Cancer Foundation
  2. European Research Council (ERC) [268515]
  3. NIH [R01 GM126033]
  4. Natural Science and Engineering Research Council of Canada [RGPIN-2019-05699]

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This study investigates the cis-regulatory elements in E2f1 mRNA and how they enable translation in response to signals, promoting cell proliferation. It was found that small uORFs in the 5' UTR of E2f1 mRNA limit its translation, but TOR signaling can bypass this restriction. EGFR signaling also enhances translation, but with less reliance on uORFs.
E2F transcription factors are master regulators of the eukaryotic cell cycle. In Drosophila, the sole activating E2F, E2F1, is both required for and sufficient to promote G1 -> S progression. E2F1 activity is regulated both by binding to RB Family repressors and by posttranscriptional control of E2F1 protein levels by the EGFR and TOR signaling pathways. Here, we investigate cis-regulatory elements in the E2f1 messenger RNA (mRNA) that enable E2f1 translation to respond to these signals and promote mitotic proliferation of wing imaginal disc and intestinal stem cells. We show that small upstream open reading frames (uORFs) in the 5' untranslated region (UTR) of the E2f1 mRNA limit its translation, impacting rates of cell proliferation. E2f1 transgenes lacking these 5'UTR uORFs caused TOR-independent expression and excess cell proliferation, suggesting that TOR activity can bypass uORF-mediated translational repression. EGFR signaling also enhanced translation but through a mechanism less dependent on 50'TR uORFs. Further, we mapped a region in the E2f1 mRNA that contains a translational enhancer, which may also be targeted by TOR signaling. This study reveals translational control mechanisms through which growth signaling regulates cell cycle progression.

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