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Cyclin G and the Polycomb Repressive complexes PRC1 and PR-DUB cooperate for developmental stability

机译:Cyclin G和Polycomb抑制配合物PRC1和PR-DUB用于发育稳定性

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摘要

In Drosophila, ubiquitous expression of a short Cyclin G isoform generates extreme developmental noise estimated by fluctuating asymmetry (FA), providing a model to tackle developmental stability. This transcriptional cyclin interacts with chromatin regulators of the Enhancer of Trithorax and Polycomb (ETP) and Polycomb families. This led us to investigate the importance of these interactions in developmental stability. Deregulation of Cyclin G highlights an organ intrinsic control of developmental noise, linked to the ETP-interacting domain, and enhanced by mutations in genes encoding members of the Polycomb Repressive complexes PRC1 and PR-DUB. Deep-sequencing of wing imaginal discs deregulating CycG reveals that high developmental noise correlates with up-regulation of genes involved in translation and down-regulation of genes involved in energy production. Most Cyclin G direct transcriptional targets are also direct targets of PRC1 and RNAPolII in the developing wing. Altogether, our results suggest that Cyclin G, PRC1 and PR-DUB cooperate for developmental stability.
机译:在果蝇中,通过波动不对称(FA)的短旋蛋白G同种型的无处不在的表达产生极端的发育噪声,提供了一种解决发育稳定性的模型。该转录细胞周期蛋白与Trithorax和Polycomb(ETP)和Polycomb系列的增强剂的染色质调节剂相互作用。这使我们研究了这些相互作用对发展稳定性的重要性。细胞周期蛋白G的放松管制突出了与ETP相互作用结构域连接的发育噪声的器官固有控制,并通过编码Polycomb压抑复合物PRC1和PR-DUB的成员的基因中的突变增强。翼状椎间盘的深度测序DEREGULING CYCG揭示了高发育噪声与参与能量产生的基因的翻译和下调的基因的上调相关。大多数Cyclin G直接转录目标也是显影机翼中PRC1和RNAPolii的直接目标。完全,我们的结果表明,Cyclin G,PRC1和PR-Dub用于发育稳定性。

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