Department of Anatomy and Cell Biology, University of Melbourne, Parkville, Melbourne, Australia.
Development. 2010 Sep 1;137(17):2875-84. doi: 10.1242/dev.049585. Epub 2010 Jul 28.
An unresolved question regarding the RNA-recognition motif (RRM) protein Half pint (Hfp) has been whether its tumour suppressor behaviour occurs by a transcriptional mechanism or via effects on splicing. The data presented here demonstrate that Hfp achieves cell cycle inhibition via an essential role in the repression of Drosophila myc (dmyc) transcription. We demonstrate that regulation of dmyc requires interaction between the transcriptional repressor Hfp and the DNA helicase subunit of TFIIH, Haywire (Hay). In vivo studies show that Hfp binds to the dmyc promoter and that repression of dmyc transcription requires Hfp. In addition, loss of Hfp results in enhanced cell growth, which depends on the presence of dMyc. This is consistent with Hfp being essential for inhibition of dmyc transcription and cell growth. Further support for Hfp controlling dmyc transcriptionally comes from the demonstration that Hfp physically and genetically interacts with the XPB helicase component of the TFIIH transcription factor complex, Hay, which is required for normal levels of dmyc expression, cell growth and cell cycle progression. Together, these data demonstrate that Hfp is crucial for repression of dmyc, suggesting that a transcriptional, rather than splicing, mechanism underlies the regulation of dMyc and the tumour suppressor behaviour of Hfp.
半分蛋白(Hfp)的 RNA 识别基序(RRM)蛋白一直存在一个悬而未决的问题,即其肿瘤抑制行为是通过转录机制还是通过对剪接的影响发生。这里呈现的数据表明,Hfp 通过在抑制果蝇 myc(dmyc)转录中发挥重要作用来实现细胞周期抑制。我们证明,dmyc 的调节需要转录抑制剂 Hfp 与 TFIIH 的 DNA 解旋酶亚基 Haywire(Hay)之间的相互作用。体内研究表明,Hfp 与 dmyc 启动子结合,并且 dmyc 转录的抑制需要 Hfp。此外,Hfp 的缺失导致细胞生长增强,这依赖于 dMyc 的存在。这与 Hfp 对 dmyc 转录和细胞生长的抑制作用至关重要是一致的。Hfp 控制 dmyc 转录的进一步证据来自于 Hfp 与 TFIIH 转录因子复合物的 XPB 解旋酶成分 Hay 物理和遗传相互作用的证明,Hay 对于正常水平的 dmyc 表达、细胞生长和细胞周期进程是必需的。这些数据表明,Hfp 对半分蛋白(Hfp)的抑制至关重要,这表明 dMyc 的调节和 Hfp 的肿瘤抑制行为是基于转录机制,而不是剪接机制。