Bradley-Gill Mary-Rose, Kim Minhee, Feingold Daniel, Yergeau Christine, Houde Josée, Moon Nam-Sung
Department of Biology, Developmental Biology Research Initiative, McGill University, Montreal, Quebec, Canada H3A 1B1.
Department of Biology, Developmental Biology Research Initiative, McGill University, Montreal, Quebec, Canada H3A 1B1.
Dev Biol. 2016 Mar 15;411(2):195-206. doi: 10.1016/j.ydbio.2016.02.004. Epub 2016 Feb 6.
The E2F family of transcription factors are evolutionarily conserved regulators of the cell cycle that can be divided into two groups based on their ability to either activate or repress transcription. In Drosophila, there is only one "activator" E2F, dE2F1, which provides all of the pro-proliferative activity of E2F during development. Interestingly, the de2f1 gene can be transcribed from multiple promoters resulting in six alternate transcripts. In this study, we sought to investigate the biological significance of the alternate transcriptional start sites. We focused on the de2f1 promoter region where tissue and cell-type specific enhancer activities were observed at the larval stage. While a genomic deletion of this region, de2f1(ΔRA), decreased the overall expression level of dE2F1, flies developed normally with no obvious proliferation defects. However, a detailed analysis of the de2f1(ΔRA) mutant eye imaginal discs revealed that dE2F1 is needed for proper cell cycle exit. We discovered that dE2F1 expression during G1 arrest prior to the differentiation process of the developing eye is important for maintaining cell cycle arrest at a later stage of the eye development. Overall, our study suggests that specific alternate transcripts of "activator" E2F, dE2F1, may have a dual function on cell cycle progression and cannot simply be viewed as a pro-proliferative transcription factor.
E2F转录因子家族是细胞周期中进化保守的调节因子,根据其激活或抑制转录的能力可分为两组。在果蝇中,只有一种“激活剂”E2F,即dE2F1,它在发育过程中提供E2F的所有促增殖活性。有趣的是,de2f1基因可以从多个启动子转录,产生六种可变转录本。在本研究中,我们试图研究可变转录起始位点的生物学意义。我们聚焦于de2f1启动子区域,在幼虫阶段观察到该区域具有组织和细胞类型特异性增强子活性。虽然该区域的基因组缺失(de2f1(ΔRA))降低了dE2F1的整体表达水平,但果蝇发育正常,没有明显的增殖缺陷。然而,对de2f1(ΔRA)突变体眼成虫盘的详细分析表明,dE2F1对于正常的细胞周期退出是必需的。我们发现,在发育中的眼睛分化过程之前的G1期停滞期间dE2F1的表达对于在眼睛发育的后期维持细胞周期停滞很重要。总体而言,我们的研究表明,“激活剂”E2F的特定可变转录本dE2F1可能对细胞周期进程具有双重功能,不能简单地被视为促增殖转录因子。