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Integration of Canonical and Noncanonical Wnt Signaling Pathways Patterns the Neuroectoderm Along the Anterior–Posterior Axis of Sea Urchin Embryos

机译:规范性和非规范性Wnt信号通路的整合模式沿着海胆胚胎前后轴的神经外胚层模式。

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摘要

Patterning the neuroectoderm along the anterior–posterior (AP) axis is a critical event in the early development of deuterostome embryos. However, the mechanisms that regulate the specification and patterning of the neuroectoderm are incompletely understood. Remarkably, the anterior neuroectoderm (ANE) of the deuterostome sea urchin embryo expresses many of the same transcription factors and secreted modulators of Wnt signaling, as does the early vertebrate ANE (forebrain/eye field). Moreover, as is the case in vertebrate embryos, confining the ANE to the anterior end of the embryo requires a Wnt/β-catenin-dependent signaling mechanism. Here we use morpholino- or dominant negative-mediated interference to demonstrate that the early sea urchin embryo integrates information not only from Wnt/β-catenin but also from Wnt/Fzl5/8-JNK and Fzl1/2/7-PKC pathways to provide precise spatiotemporal control of neuroectoderm patterning along its AP axis. Together, through the Wnt1 and Wnt8 ligands, they orchestrate a progressive posterior-to-anterior wave of re-specification that restricts the initial, ubiquitous, maternally specified, ANE regulatory state to the most anterior blastomeres. There, the Wnt receptor antagonist, Dkk1, protects this state through a negative feedback mechanism. Because these different Wnt pathways converge on the same cell fate specification process, our data suggest they may function as integrated components of an interactive Wnt signaling network. Our findings provide strong support for the idea that the sea urchin ANE regulatory state and the mechanisms that position and define its borders represent an ancient regulatory patterning system that was present in the common echinoderm/vertebrate ancestor.
机译:沿前后轴(AP)轴对神经外胚层进行图案化是氘核吻合口胚胎早期发育中的关键事件。但是,尚不完全了解调节神经外胚层规格和模式的机制。值得注意的是,氘核海胆胚胎的前神经外胚层(ANE)与早期脊椎动物ANE(前脑/眼场)一样表达许多相同的转录因子和Wnt信号传导的分泌调节剂。此外,与脊椎动物胚胎一样,将ANE限制在胚胎的前端需要Wnt /β-catenin依赖性信号传导机制。在这里,我们使用吗啉代或主要的负介导干扰来证明早期海胆胚胎不仅整合了Wnt /β-catenin的信息,而且整合了Wnt / Fzl5 / 8-JNK和Fzl1 / 2 / 7-PKC途径的信息神经外胚层沿其AP轴的精确时空控制。通过Wnt1和Wnt8配体,它们共同协调了从后到前的重新规范化波,从而将初始的,普遍存在的,由母亲指定的ANE调节状态限制在最靠前的卵裂球。在那里,Wnt受体拮抗剂Dkk1通过负反馈机制保护该状态。由于这些不同的Wnt通路在同一细胞命运指定过程中汇合,因此我们的数据表明它们可能充当交互式Wnt信号网络的集成组件。我们的发现为以下观点提供了有力的支持:海胆ANE监管状态以及定位和定义其边界的机制代表了常见的棘皮动物/脊椎动物祖先中存在的古老监管模式系统。

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