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A Maternal System Initiating the Zygotic Developmental Program through Combinatorial Repression in the Ascidian Embryo

机译:母体系统通过组合抑制在海胚胚胎中启动合子发育计划。

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摘要

Maternal factors initiate the zygotic developmental program in animal embryos. In embryos of the chordate, Ciona intestinalis, three maternal factors—Gata.a, β-catenin, and Zic-r.a—are required to establish three domains of gene expression at the 16-cell stage; the animal hemisphere, vegetal hemisphere, and posterior vegetal domains. Here, we show how the maternal factors establish these domains. First, only β-catenin and its effector transcription factor, Tcf7, are required to establish the vegetal hemisphere domain. Second, genes specifically expressed in the posterior vegetal domain have additional repressive cis-elements that antagonize the activity of β-catenin/Tcf7. This antagonizing activity is suppressed by Zic-r.a, which is specifically localized in the posterior vegetal domain and binds to DNA indirectly through the interaction with Tcf7. Third, Gata.a directs specific gene expression in the animal hemisphere domain, because β-catenin/Tcf7 weakens the Gata.a-binding activity for target sites through a physical interaction in the vegetal cells. Thus, repressive regulation through protein-protein interactions among the maternal transcription factors is essential to establish the first distinct domains of gene expression in the chordate embryo.
机译:母体因素启动了动物胚胎的合子发育程序。在氯酸盐的胚中,Ciona intestinalis,需要三个母体因子-Gata.a,β-catenin和Zic-r.a-来在16细胞阶段建立三个基因表达域。动物半球,植物半球和后植物区。在这里,我们展示了孕产因素如何建立这些领域。首先,只需要β-catenin及其效应子转录因子Tcf7即可建立植物半球结构域。其次,在植物后结构域中特异性表达的基因具有额外的抑制性顺式元件,可拮抗β-catenin/ Tcf7的活性。 Zic-r.a抑制了这种拮抗活性,Zic-r.a特异性地定位在植物后结构域中,并通过与Tcf7的相互作用而间接地与DNA结合。第三,Gata.a指导动物半球结构域中的特定基因表达,因为β-catenin/ Tcf7通过植物细胞中的物理相互作用削弱了目标部位的Gata.a结合活性。因此,通过母体转录因子之间的蛋白质-蛋白质相互作用进行抑制性调控对于在cho酸盐胚胎中建立基因表达的第一个不同域至关重要。

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