Quinn Leonie M, Dickins Ross A, Coombe Michelle, Hime Gary R, Bowtell David D L, Richardson Helena
Trescowthick Research Laboratories, Peter MacCallum Cancer Centre, St Andrew's Place, East Melbourne, VIC 3002 Australia.
Development. 2004 Mar;131(6):1411-23. doi: 10.1242/dev.01019.
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.
哺乳动物的FIR在mRNA前体剪接和Myc的负转录调控中具有双重作用。在这里,我们表明果蝇中FIR的直系同源物Half pint(Hfp)可抑制果蝇的细胞增殖。我们发现Hfp的过表达能有效抑制G1/S期进程,而hfp突变体则表现出异位细胞周期。Hfp负向调节dmyc的表达和功能,因为降低hfp的剂量会增加dmyc mRNA的水平,并挽救dmyc低表达果蝇中缺陷的卵子发生。将hfp的剂量减半可抑制dmyc过表达细胞中的G2期延迟,这表明Hfp对G2-M期进程也是限速的。与此一致的是,hfp突变体挽救了stg突变体胚胎的14期G2期阻滞。对hfp突变体克隆的分析显示Stg蛋白水平升高,但stg mRNA水平没有变化,这表明hfp通过转录后机制负向调节Stg。最后,已知在翅膀中负向调节dmyc表达的无翅通路的异位激活会导致Hfp蛋白的积累。我们的研究结果表明,Hfp在无翅通路诱导的发育模式信号与dMyc调节的细胞生长和增殖之间提供了关键的分子联系。