首页> 外文期刊>Communicative & Integrative Biology >SEC14 and Spectrin Domains 1 (Sestd1), Dishevelled 2 (Dvl2) and Dapper Antagonist of Catenin-1 (Dact1) co-regulate the Wnt/Planar Cell Polarity (PCP) pathway during mammalian development
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SEC14 and Spectrin Domains 1 (Sestd1), Dishevelled 2 (Dvl2) and Dapper Antagonist of Catenin-1 (Dact1) co-regulate the Wnt/Planar Cell Polarity (PCP) pathway during mammalian development

机译:SEC14和Spectrin域1(Sestd1),Disheveled 2(Dvl2)和Catenin-1的Dapper拮抗剂(Dact1)在哺乳动物发育过程中共同调节Wnt /平面细胞极性(PCP)途径。

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We previously reported that Sestd1 KO phenocopies Dact1 KO in mice, consistent with a model in which Sestd1 and Dact1 act together to form a crucial functional complex that regulates Vangl2 in the Wnt/Planar Cell Polarity (PCP) pathway. Here, we show that Dvl2, a binding partner of Dact1, also forms complexes with Sestd1, and does so independently of both Dact1 and Vangl2. In cell-based assays, whereas Sestd1 does not alter Dvl2 activation of the Wnt/β-catenin signaling pathway, Dvl2 enhances activation of Rho family GTPases by Dact1 and Sestd1, consistent with a role in the PCP pathway. In mice, although Dvl2 KO is recessive in an otherwise wild type background, it leads to dominant embryonic lethality in either the Sestd1 or Dact1 KO background. This genetic synergy stands in contrast to the epistasis we have previously reported between Sestd1 and Dact1 KO, and suggests independent or semi-independent functions for Dvl2 vs. Sestd1/Dact1 in the regulation of the PCP pathway during development. In conclusion, biochemical and genetic interactions between Dvl2, Sestd1, and Dact1, in addition to prior reported interactions between these same molecules and Vangl2, suggest that all these gene products can form complexes together and regulate the PCP pathway during mammalian development. However, Sestd1 and Dact1 have a closely allied function in the post-translational regulation of Vangl2 that is at least partially distinct from the functions of Dvl2 in this pathway.
机译:我们先前曾报道,小鼠中的Sestd1 KO表型与Dact1 KO,与Sestd1和Dact1共同作用以形成调节Wnt /平面细胞极性(PCP)途径中的Vangl2的关键功能复合物的模型一致。在这里,我们显示Dvl2(Dact1的结合伴侣)也与Sestd1形成复合物,并且与Dact1和Vangl2无关。在基于细胞的测定中,Sestd1不会改变Wnt /β-catenin信号通路的Dvl2激活,而Dvl2通过Dact1和Sestd1增强Rho家族GTPases的激活,这与PCP通路中的作用一致。在小鼠中,尽管Dvl2 KO在其他野生型背景下是隐性的,但它会在Sestd1或Dact1 KO背景下导致显着的胚胎致死率。这种遗传协同作用与我们先前报道的在Sestd1和Dact1 KO之间的上皮形成对比,并且暗示了Dvl2与Sestd1 / Dact1在发育过程中PCP途径调控中的独立或半独立功能。总之,Dvl2,Sestd1和Dact1之间的生化和遗传相互作用,除了先前报道的这些相同分子与Vangl2之间的相互作用外,还表明所有这些基因产物可以一起形成复合物并在哺乳动物发育过程中调节PCP途径。但是,Sestd1和Dact1在Vangl2的翻译后调控中具有密切相关的功能,该功能至少部分不同于Dvl2在此途径中的功能。

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