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Polycomb silencing of the Drosophila 4E-BP gene regulates imaginal disc cell growth

机译:Drosophila 4e-BP基因的Polycomb沉默调节Moreminal Disc Cell生长

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摘要

Polycomb group (PcG) proteins are best known for their role in maintaining stable, mitotically heritable silencing of the homeotic (HOX) genes during development. In addition to loss of homeotic gene silencing, some PcG mutants also have small imaginal discs. These include mutations in E(z), Su(z)12, esc and escl, which encode Polycomb Repressive Complex 2 (PRC2) subunits. The cause of this phenotype is not known, but the human homologs of PRC2 subunits have been shown to play a role in cell proliferation, are over-expressed in many tumors, and appear to be required for tumor proliferation. Here we show that the small imaginal disc phenotype arises, at least in part, from a cell growth defect. In homozygous E(z) mutants, imaginal disc cells are smaller than cells in normally proliferating discs. We show that the Thor gene, which encodes eIF4E-Binding Protein (4E-BP), the evolutionarily conserved inhibitor of cap-dependent translation and potent inhibitor of cell growth, is involved in the development of this phenotype. The Thor promoter region contains DNA binding motifs for transcription factors found in well-characterized Polycomb Response Elements (PREs), including PHO/PHOL, GAGA Factor, and others, suggesting that Thor may be a direct target of Polycomb silencing. We present chromatin immunoprecipitation evidence that PcG proteins are bound to the Thor 5’ region in vivo. The Thor gene is normally repressed in imaginal discs, but Thor mRNA and 4E-BP protein levels are elevated in imaginal discs of PRC2 subunit mutant larvae. Deletion of the Thor gene in E(z) mutants partially restores imaginal disc size toward wild-type and results in an increase in the fraction of larvae that pupariate. These results thus suggest that PcG proteins can directly modulate cell growth in Drosophila, in part by regulating Thor expression.
机译:众所周知,聚梳组(PcG)蛋白在发育过程中可保持同源(HOX)基因的稳定,有丝分裂遗传的沉默。除了失去同源基因沉默之外,某些PcG突变体还具有小的假想盘。这些包括E(z),Su(z)12,esc和escl中的突变,这些突变编码Polycomb Repressive Complex 2(PRC2)亚基。这种表型的原因尚不清楚,但已显示人类PRC2亚基的同源物在细胞增殖中起作用,在许多肿瘤中过表达,并且似乎是肿瘤增殖所必需的。在这里,我们表明小的假想椎间盘表型至少部分是由于细胞生长缺陷引起的。在纯合E(z)突变体中,假想椎间盘细胞比正常增殖椎间盘中的细胞小。我们显示,编码eIF4E结合蛋白(4E-BP),帽依赖性翻译的进化保守抑制剂和细胞生长的强效抑制剂的Thor基因参与了该表型的发展。 Thor启动子区域包含在特征明确的Polycomb反应元件(PRE)中发现的转录因子的DNA结合基序,包括PHO / PHOL,GAGA因子等,这表明Thor可能是Polycomb沉默的直接靶点。我们提供了染色质免疫沉淀证据,证明PcG蛋白在体内与Thor 5'区结合。 Thor基因通常在视盘中被抑制,但是在PRC2亚基突变体幼虫的视盘中Thor mRNA和4E-BP蛋白水平升高。 E(z)突变体中的Thor基因的删除部分恢复了想象的圆盘大小向野生型,并导致增加了化p幼虫的比例。因此,这些结果表明,PcG蛋白可以直接调节果蝇中的细胞生长,部分是通过调节Thor的表达。

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