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Formation of the Embryonic Organizer Is Restricted by the Competitive Influences of Fgf Signaling and the SoxB1 Transcription Factors

机译:Fgf信号和SoxB1转录因子的竞争影响限制了胚胎组织器的形成。

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摘要

The organizer is one of the earliest structures to be established during vertebrate development and is crucial to subsequent patterning of the embryo. We have previously shown that the SoxB1 transcription factor, Sox3, plays a central role as a transcriptional repressor of zebrafish organizer gene expression. Recent data suggest that Fgf signaling has a positive influence on organizer formation, but its role remains to be fully elucidated. In order to better understand how Fgf signaling fits into the complex regulatory network that determines when and where the organizer forms, the relationship between the positive effects of Fgf signaling and the repressive effects of the SoxB1 factors must be resolved. This study demonstrates that both fgf3 and fgf8 are required for expression of the organizer genes, gsc and chd, and that SoxB1 factors (Sox3, and the zebrafish specific factors, Sox19a and Sox19b) can repress the expression of both fgf3 and fgf8. However, we also find that these SoxB1 factors inhibit the expression of gsc and chd independently of their repression of fgf expression. We show that ectopic expression of organizer genes induced solely by the inhibition of SoxB1 function is dependent upon the activation of fgf expression. These data allow us to describe a comprehensive signaling network in which the SoxB1 factors restrict organizer formation by inhibiting Fgf, Nodal and Wnt signaling, as well as independently repressing the targets of that signaling. The organizer therefore forms only where Nodal-induced Fgf signaling overlaps with Wnt signaling and the SoxB1 proteins are absent.
机译:该组织者是脊椎动物发育过程中最早建立的结构之一,对随后的胚胎构图至关重要。我们以前已经表明,SoxB1转录因子Sox3作为斑马鱼组织者基因表达的转录阻遏物起着核心作用。最近的数据表明,Fgf信号传导对组织者的形成有积极的影响,但其作用仍有待充分阐明。为了更好地理解Fgf信号如何适应决定组织者何时何地形成的复杂调控网络,必须解决Fgf信号的积极作用与SoxB1因子的抑制作用之间的关系。这项研究表明,fgf3和fgf8都是组织基因gsc和chd的表达所必需的,并且SoxB1因子(Sox3和斑马鱼特定因子Sox19a和Sox19b)可以抑制fgf3和fgf8的表达。但是,我们还发现,这些SoxB1因子独立于其对fgf表达的抑制作用而抑制gsc和chd的表达。我们显示,仅通过抑制SoxB1功能诱导的组织基因的异位表达取决于fgf表达的激活。这些数据使我们能够描述一个全面的信号网络,其中SoxB1因子通过抑制Fgf,Nodal和Wnt信号以及独立抑制该信号的靶标来限制组织者的形成。因此,仅在节点诱导的Fgf信号与Wnt信号重叠且不存在SoxB1蛋白的地方形成组织器。

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