首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Gene Regulatory Network Subcircuit Controlling A Dynamic Spatial Pattern Of Signaling In The Sea Urchin Embryo
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Gene Regulatory Network Subcircuit Controlling A Dynamic Spatial Pattern Of Signaling In The Sea Urchin Embryo

机译:基因调控网络子电路,控制海胆胚胎中信号的动态空间格局

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We dissect the transcriptional regulatory relationships coordinating the dynamic expression patterns of two signaling genes, wnt8 and delta, which are central to specification of the sea urchin embryo endomesoderm. cis-Regulatory analysis shows that transcription of the gene encoding the Notch ligand Delta is activated by the widely expressed Runx transcription factor, but spatially restricted by HesC-mediated repression through a site in the delta 5'UTR. Spatial transcription of the hesC gene, however, is controlled by Blimp1 repression. Blimp1 thus represses the repressor of delta, thereby permitting its transcription. The blimpi gene is itself linked into a feedback circuit that includes the wnt8 signaling ligand gene, and we showed earlier that this circuit generates an expanding torus of blimpi and wnt8 expression. The finding that delta expression is also controlled at the cis-regulatory level by the blimp1-wnt8 torus-generating subcircuit now explains the progression of Notch signaling from the mesoderm to the endoderm of the developing embryo. Thus the specific cis-regulatory linkages of the gene regulatory network encode the coordinated spatial expression of Wnt and Notch signaling as they sweep outward across the vegetal plate of the embryo.
机译:我们剖析了转录调控关系,协调两个信号基因wnt8和delta的动态表达模式,这对于海胆胚胎内膜中胚层的规格至关重要。顺式调控分析表明,编码Notch配体Delta的基因的转录被广泛表达的Runx转录因子激活,但在空间上受到HesC介导的通过δ5'UTR位点的阻遏作用的限制。但是,hesC基因的空间转录受Blimp1阻遏控制。因此,Blimp1抑制了δ的阻遏物,从而允许其转录。 blimpi基因本身被链接到一个包含wnt8信号配体基因的反馈电路中,并且我们先前已证明该电路产生了blimpi和wnt8表达的扩展环面。 blimp1-wnt8产生圆环的子回路也将δ表达控制在顺式调节水平的发现现在解释了Notch信号从中胚层到发育中胚胎的内胚层的进程。因此,基因调节网络的特定顺式-调控键编码Wnt和Notch信号的协调空间表达,因为它们向外扫过胚胎的植物板。

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