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首页> 外文期刊>Mechanisms of Development >ESC, ESCL and their roles in Polycomb Group mechanisms.
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ESC, ESCL and their roles in Polycomb Group mechanisms.

机译:ESC,ESCL及其在Polycomb Group机制中的作用。

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摘要

The Drosophila esc gene is a Polycomb Group (PcG) gene whose product is essential for histone H3 K27 methylation and PcG silencing yet genetic analysis indicated that its product was needed only in the very early embryo. We know now that escl, a close homologue of esc exists in the Drosophila genome. In contrast with earlier studies, we find that both esc and escl are expressed at all stages of development. We show that three major differences between the two genes are in the transcriptional control, which allows esc to make a much stronger maternal contribution; in the splicing efficiency, which makes a major difference in the early escl function; and in the lower participation of ESCL in the PRC2 complex and lower enzymatic activity of the resulting complex. Both genes can sustain normal development in the absence of the other except for the critical role provided by maternal esc product in early embryonic development. Finally, using zygotic mutations in both genes, we show that the gradual loss of function of PRC2 activity leads first to a loss of histone H3 K27 methylation and only at a later stage to a gradual loss of PRC1 binding to chromatin.
机译:果蝇esc基因是一个Polycomb Group(PcG)基因,其产物对于组蛋白H3 K27甲基化和PcG沉默至关重要,但遗传分析表明,其产物仅在非常早期的胚胎中才需要。现在我们知道在果蝇基因组中存在着esc的紧密同源escl。与早期的研究相反,我们发现esc和escl在开发的所有阶段都表达出来。我们显示两个基因之间的三个主要差异在于转录控制,这使得esc可以做出更强的母性贡献;在剪接效率方面,这在早期escl功能方面有很大的不同;以及ESCL对PRC2复合物的参与度较低,以及所得复合物的酶活性较低。除了母体esc产品在早期胚胎发育中所起的关键作用外,这两个基因都可以在没有另一个的情况下维持正常发育。最后,在两个基因中使用合子突变,我们显示PRC2活性功能的逐渐丧失首先导致组蛋白H3 K27甲基化的丧失,而仅在后期导致PRC1与染色质结合的逐渐丧失。

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