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Secreted frizzled related protein is a target of PaxB and plays a role in aquiferous system development in the freshwater sponge Ephydatia muelleri

机译:分泌的卷曲相关蛋白是PaxB的靶标并在淡水海绵Ephydatia muelleri的含水层系统发育中起作用

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摘要

Canonical and non-canonical Wnt signaling, as well as the Pax/Six gene network, are involved in patterning the freshwater sponge aquiferous system. Using computational approaches to identify transcription factor binding motifs in a freshwater sponge genome, we located putative PaxB binding sites near a Secreted Frizzled Related Protein (SFRP) gene in Ephydatia muelleri. EmSFRP is expressed throughout development, but with highest levels in juvenile sponges. In situ hybridization and antibody staining show EmSFRP expression throughout the pinacoderm and choanoderm in a subpopulation of amoeboid cells that may be differentiating archeocytes. Knockdown of EmSFRP leads to ectopic oscula formation during development, suggesting that EmSFRP acts as an antagonist of Wnt signaling in E. muelleri. Our findings support a hypothesis that regulation of the Wnt pathway by the Pax/Six network as well as the role of Wnt signaling in body plan morphogenesis was established before sponges diverged from the rest of the metazoans.
机译:规范性和非规范性Wnt信号以及Pax / Six基因网络都参与了淡水海绵含水系统的模式设计。使用计算方法来识别淡水海绵基因组中的转录因子结合基序,我们将定位的PaxB结合位点定位在粘皮赤潮中的分泌性卷曲相关蛋白(SFRP)基因附近。 EmSFRP在整个发育过程中都有表达,但在青少年海绵中含量最高。原位杂交和抗体染色显示,在可能是区分原始细胞的变形虫细胞亚群中,整个pinacoderm和choanoderm中的EmSFRP表达。击倒EmSFRP会导致发育过程中异位骨小孔的形成,这表明EmSFRP可以作为穆勒埃里氏菌Wnt信号的拮抗剂。我们的发现支持这样的假说,即在海绵与后生动物分开之前,已经建立了Pax / Six网络对Wnt途径的调控以及Wnt信号在人体计划形态发生中的作用。

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