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The morphogen Decapentaplegic employs a two-tier mechanism to activate target retinal determining genes during ectopic eye formation in Drosophila

机译:果蝇的形态发生素采用两层机制激活果蝇异位眼形成过程中的目标视网膜决定基因

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摘要

Understanding the role of morphogen in activating its target genes, otherwise epigenetically repressed, during change in cell fate specification is a very fascinating yet relatively unexplored domain. Our in vivo loss-of-function genetic analyses reveal that specifically during ectopic eye formation, the morphogen Decapentaplegic (Dpp), in conjunction with the canonical signaling responsible for transcriptional activation of retinal determining (RD) genes, triggers another signaling cascade. Involving dTak1 and JNK, this pathway down-regulates the expression of polycomb group of genes to do away with their repressive role on RD genes. Upon genetic inactivation of members of this newly identified pathway, the canonical Dpp signaling fails to trigger RD gene expression beyond a threshold, critical for ectopic photoreceptor differentiation. Moreover, the drop in ectopic RD gene expression and subsequent reduction in ectopic photoreceptor differentiation resulting from inactivation of dTak1 can be rescued by down-regulating the expression of polycomb group of genes. Our results unravel an otherwise unknown role of morphogen in coordinating simultaneous transcriptional activation and de-repression of target genes implicating its importance in cellular plasticity.
机译:在细胞命运规范的变化过程中,了解吗啡原激活其靶基因(否则被表观遗传抑制)在其靶基因中的作用是一个非常引人入胜但相对未开发的领域。我们的体内功能丧失性遗传分析表明,特别是在异位眼形成过程中,吗啡成因十足瘫痪(Dpp)与负责视网膜决定(RD)基因转录激活的规范信号一起触发了另一个信号级联。涉及dTak1和JNK,此途径下调多梳基因组的表达,从而消除了它们对RD基因的抑制作用。在该新鉴定的途径的成员遗传失活后,规范的Dpp信号传导无法触发RD基因表达超过阈值,该阈值对于异位感光细胞的分化至关重要。此外,可以通过下调多梳基因组的表达来挽救因dTak1失活而引起的异位RD基因表达的下降以及随后异位感光细胞分化的减少。我们的研究结果揭示了形态发生素在协调目标基因同时转录激活和抑制中的未知作用,暗示了它在细胞可塑性中的重要性。

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