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Published on: December 16, 2014
Drosophila Hfp negatively regulates dmyc and stg to inhibit cell proliferation
Leonie M Quinn1, Ross A Dickins, Michelle Coombe
1Trescowthick Research Laboratories, Peter MacCallum Cancer Centre, St Andrew's Place, East Melbourne, VIC 3002 Australia.
Abstract:
Mammalian FIR has dual roles in pre-mRNA splicing and in negative transcriptional control of Myc. Here we show that Half pint (Hfp), the Drosophila orthologue of FIR, inhibits cell proliferation in Drosophila. We find that Hfp overexpression potently inhibits G1/S progression, while hfp mutants display ectopic cell cycles. Hfp negatively regulates dmyc expression and function, as reducing the dose of hfp increases levels of dmyc mRNA and rescues defective oogenesis in dmyc hypomorphic flies. The G2-delay in dmyc-overexpressing cells is suppressed by halving the dosage of hfp, indicating that Hfp is also rate-limiting for G2-M progression. Consistent with this, the cycle 14 G2-arrest of stg mutant embryos is rescued by the hfp mutant. Analysis of hfp mutant clones revealed elevated levels of Stg protein, but no change in the level of stg mRNA, suggesting that hfp negatively regulates Stg via a post-transcriptional mechanism. Finally, ectopic activation of the wingless pathway, which is known to negatively regulate dmyc expression in the wing, results in an accumulation of Hfp protein. Our findings indicate that Hfp provides a critical molecular link between the developmental patterning signals induced by the wingless pathway and dMyc-regulated cell growth and proliferation.
Insights
Half pint (Hfp), a Drosophila FIR protein, inhibits cell proliferation by regulating dMyc and cell cycle progression. Hfp links developmental signals to cell growth, impacting G1/S and G2-M phases.
Area of Science:
- Cell Biology
- Developmental Biology
- Genetics
Background:
- Mammalian FIR protein regulates pre-mRNA splicing and Myc transcription.
- Understanding the function of FIR orthologues in other species provides insights into conserved biological processes.
Purpose of the Study:
- To investigate the role of Drosophila FIR orthologue, Half pint (Hfp), in cell proliferation and its relationship with dMyc and cell cycle regulation.
Main Methods:
- Overexpression and mutation analysis of Hfp in Drosophila.
- Assessment of cell cycle progression (G1/S and G2-M phases).
- Analysis of dMyc mRNA levels and Stg protein levels in Hfp mutants and overexpressors.
Main Results:
- Hfp overexpression inhibits G1/S progression; hfp mutants show ectopic cell cycles.
- Hfp negatively regulates dMyc expression and function, impacting oogenesis.
- Hfp is rate-limiting for G2-M progression and rescues stg mutant phenotypes.
- Hfp negatively regulates Stg protein levels post-transcriptionally.
- Wingless pathway activation leads to Hfp protein accumulation.
Conclusions:
- Hfp acts as a cell proliferation inhibitor in Drosophila.
- Hfp links developmental patterning (Wingless pathway) to dMyc-mediated cell growth.
- Hfp plays crucial roles in both G1/S and G2-M cell cycle transitions.
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