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Published on: February 12, 2018
p19(Arf) limits primary vitreous cell proliferation driven by PDGF-B
Nida S Iqbal1, Caitlin C Devitt1, Caroline Y Sung1
1Division of Hematology/Oncology, Department of Pediatrics, University of Texas Southwestern Medical Center, 5323 Harry Hines Blvd., Dallas, TX 75390, USA.
Abstract:
Arf encodes an important tumor suppressor, p19(Arf), which also plays a critical role to control hyperplasia in the primary vitreous during mouse eye development. In the absence of Arf, mice are born blind and display a phenotype closely mimicking severe forms of the human eye disease, persistent hyperplastic primary vitreous (PHPV). In this report, we characterize p19(Arf) expression in perivascular cells that normally populate the primary vitreous and express the Arf promoter. Using a new ex vivo model, we show that these cells respond to exogenous Tgfβ, despite being isolated at a time when Tgfβ has already turned on the Arf promoter. Treatment of the cells with PDGF-B ligand doubles the population of cells in S-phase and ectopic expression of Arf blunts that effect. We show this effect is mediated through Pdgfrβ as expression of Arf represses expression of Pdgfrβ mRNA and protein to approximately 60%. p53 is not required for Arf-dependent blockade of PDGF-B driven proliferation and repression of Pdgfrβ protein as ectopic expression of Arf is still able to inhibit the 2-fold increase in the S-phase fraction of cells upon treatment with PDGF-B. Finally, induction of mature miR-34a, a microRNA previously identified to be regulated by p19(Arf) does not depend on p53 while the expression of the primary transcript does require p53. These data corroborate that, as in vivo, p19(Arf) functions to inhibit PDGF-B driven proliferation ex vivo.
Insights
The tumor suppressor p19-Arf controls eye development by inhibiting PDGF-B driven cell proliferation. This study demonstrates p19-Arf
Area of Science:
- Molecular Biology
- Developmental Biology
- Oncology
Background:
- The Arf tumor suppressor (p19-Arf) is crucial for controlling hyperplasia in the primary vitreous during mouse eye development.
- Arf deficiency in mice leads to blindness, mimicking persistent hyperplastic primary vitreous (PHPV) in humans.
Purpose of the Study:
- To characterize p19-Arf expression in perivascular cells of the primary vitreous.
- To investigate the role of p19-Arf in regulating cell proliferation in response to growth factors.
Main Methods:
- Established a novel ex vivo model using primary vitreous perivascular cells.
- Analyzed p19-Arf expression and its regulation by Tgfβ.
- Assessed the impact of PDGF-B ligand on cell proliferation and the role of p19-Arf and Pdgfrβ.
Main Results:
- p19-Arf expressing perivascular cells respond to exogenous Tgfβ.
- PDGF-B treatment significantly increases cell proliferation (S-phase fraction), an effect blunted by ectopic p19-Arf expression.
- p19-Arf represses Pdgfrβ mRNA and protein expression, mediating the blockade of PDGF-B driven proliferation independently of p53.
- Mature miR-34a induction by p19-Arf is p53-independent, while primary transcript expression requires p53.
Conclusions:
- p19-Arf acts as a critical inhibitor of PDGF-B driven proliferation in primary vitreous cells.
- The findings highlight p19-Arf's role in regulating cell growth during eye development and its potential relevance to PHPV.
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