Department of Biology, Syracuse University, Syracuse, NY 13244, USA.
J Cell Sci. 2010 Dec 1;123(Pt 23):4095-106. doi: 10.1242/jcs.064519. Epub 2010 Nov 2.
The endocycle is a variant cell cycle comprised of alternating gap (G) and DNA synthesis (S) phases (endoreplication) without mitosis (M), which results in DNA polyploidy and large cell size. Endocycles occur widely in nature, but much remains to be learned about the regulation of this modified cell cycle. Here, we compared gene expression profiles of mitotic cycling larval brain and disc cells with the endocycling cells of fat body and salivary gland of the Drosophila larva. The results indicated that many genes that are positively regulated by the heterodimeric E2F1-DP or Myb-MuvB complex transcription factors are expressed at lower levels in endocycling cells. Many of these target genes have functions in M phase, suggesting that dampened E2F1 and Myb activity promote endocycles. Many other E2F1 target genes that are required for DNA replication were also repressed in endocycling cells, an unexpected result given that these cells must duplicate up to thousands of genome copies during each S phase. For some EF2-regulated genes, the lower level of mRNA in endocycling cells resulted in lower protein concentration, whereas for other genes it did not, suggesting a contribution of post-transcriptional regulation. Both knockdown and overexpression of E2F1-DP and Myb-MuvB impaired endocycles, indicating that transcriptional activation and repression must be balanced. Our data suggest that dampened transcriptional activation by E2F1-DP and Myb-MuvB is important to repress mitosis and coordinate the endocycle transcriptional and protein stability oscillators.
细胞内有丝分裂周期是一种变体细胞周期,由交替的间隙 (G) 和 DNA 合成 (S) 期(内复制)组成,没有有丝分裂 (M),导致 DNA 多倍体和细胞体积增大。细胞内有丝分裂周期广泛存在于自然界中,但对于这种改良细胞周期的调控仍有许多需要了解。在这里,我们比较了有丝分裂循环幼虫大脑和盘细胞与果蝇幼虫脂肪体和唾液腺的内有丝分裂细胞的基因表达谱。结果表明,许多受异二聚体 E2F1-DP 或 Myb-MuvB 复合物转录因子正向调节的基因在细胞内有丝分裂周期中表达水平较低。这些靶基因中的许多具有 M 期的功能,表明 E2F1 和 Myb 活性的减弱促进了细胞内有丝分裂周期。许多其他在细胞内有丝分裂周期中需要 DNA 复制的 E2F1 靶基因也被抑制,这是一个出乎意料的结果,因为这些细胞在每个 S 期必须复制多达数千个基因组拷贝。对于一些 EF2 调节的基因,细胞内有丝分裂周期中 mRNA 水平较低导致蛋白质浓度降低,而对于其他基因则不然,这表明存在转录后调控的贡献。E2F1-DP 和 Myb-MuvB 的敲低和过表达都损害了细胞内有丝分裂周期,表明转录激活和抑制必须平衡。我们的数据表明,E2F1-DP 和 Myb-MuvB 减弱的转录激活对于抑制有丝分裂和协调细胞内有丝分裂周期的转录和蛋白稳定性振荡器很重要。