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Diversin regulates heart formation and gastrulation movements in development

机译:Diversin调节发育中的心脏形成和胃蠕动

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Canonical and noncanonical Writ signaling regulate crucial events in the development of vertebrates and invertebrates. In this work we show that vertebrate Diversin, a potential orthologue of Drosophila Diego, controls fusion of heart precursors and gastrulation movements in zebrafish embryogenesis. These events are regulated by noncanonical Writ signaling, which is independent of beta-catenin. We found that Diversin directly interacts with Dishevelled and that this interaction is necessary and sufficient to mediate signals of the noncanonical Writ pathway to downstream effectors like Rho family GTPases and Jun N-terminal kinase. The ankyrin repeats of Diversin are required for the interaction with Dishevelled, for the activation of noncanonical Writ signaling, and for the biological responses. The mutation K446M in the DEP domain of vertebrate Dishevelled, which mimics a classical Drosophila loss of function mutation, prevents functional interaction with Diversin's ankyrin repeats. Diversin also affects planar cell polarity in Drosophila, which is controlled by the noncanonical Writ signaling pathway. Our data thus demonstrate that Diversin and Dishevelled function together in a mutually dependent fashion in zebrafish gastrulation and organ formation.
机译:规范和非规范的令状信号调节脊椎动物和无脊椎动物发育中的关键事件。在这项工作中,我们表明脊椎动物Diversin是果蝇迭戈的潜在直系同源物,它控制着斑马鱼胚胎发生中心脏前体的融合和胃动运动。这些事件由非规范的Writ信号调节,该信号独立于β-catenin。我们发现Diversin直接与Disheveled相互作用,并且这种相互作用对于介导非经典Writ途径的信号至下游效应子(如Rho家族GTPases和Jun N-末端激酶)是必要和充分的。 Diversin的锚蛋白重复序列​​是与Dishevelled相互作用,激活非规范Writ信号以及生物学应答所必需的。脊椎动物Dishevelled的DEP域中的突变K446M模仿了经典的果蝇功能丧失突变,阻止了与Diversin锚蛋白重复序列​​的功能相互作用。 Diversin还影响果蝇中的平面细胞极性,这由非规范的Writ信号传导途径控制。因此,我们的数据表明Diversin和Disheveled在斑马鱼的胃气化和器官形成中以相互依赖的方式共同发挥作用。

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