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A Polycomb response element in the Ubx gene that determines an epigenetically inherited state of repression.

机译:Ubx基因中的Polycomb响应元件确定表观遗传的抑制状态。

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摘要

Segmentation genes provide the signals for the activation and regulation of homeotic genes in Drosophila but cannot maintain the resulting pattern of expression because their activity ceases halfway through embryogenesis. Maintenance of the pattern is due to the Polycomb group of genes (Pc-G) and the trithorax group of genes (trx-G), responsible for the persistence of the active or repressed state of homeotic genes. We have identified a regulatory element in the Ubx gene that responds to Pc-G and trx-G genes. Transposons carrying this element create new binding sites for Pc-G products in the polytene chromosomes. This Pc-G maintenance element (PRE), establishes a repressive complex that keeps enhancers repressed in cells in which they were originally repressed and maintains this state through many cell divisions. The trx-G products stimulate the expression of enhancers in cells in which they were originally active. This mechanism is responsible for the correct regulation of imaginal disc enhancers, which lack themselves antero-posterior positional information. The PRE also causes severe variegation of the mini-white gene present in the transposon, a phenomenon very similar to heterochromatic position-effect variegation. The significance of this mechanism for homeotic gene regulation is discussed.
机译:分割基因为果蝇中的同源基因提供了激活和调控的信号,但由于它们的活性在胚胎发生的一半时就停止了,因此无法维持表达的结果。模式的维持归因于多梳基因组(Pc-G)和三胸基因组(trx-G),它们负责同源基因的活跃或受阻状态的持久性。我们已经在Ubx基因中发现了一个调控元件,该元件可响应Pc-G和trx-G基因。携带该元素的转座子在多聚体染色体中为Pc-G产物创建了新的结合位点。这种Pc-G维持元件(PRE)建立了一种抑制复合物,该复合物使增强子在最初被抑制的细胞中被抑制,并通过许多细胞分裂维持这种状态。 trx-G产物刺激增强子在最初具有活性的细胞中表达。这种机制负责对视盘增强器的正确调节,而视盘增强器自身缺少前后位置信息。 PRE还引起转座子中存在的小白基因的严重杂色,这种现象与异色位置效应杂色非常相似。讨论了该机制对同源基因调控的意义。

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