Department of Biology, College of Science and Technology, Temple University, Philadelphia, PA 19122, USA.
Development. 2011 May;138(10):2035-47. doi: 10.1242/dev.058800. Epub 2011 Apr 6.
Neural tube closure is a critical morphogenetic event that is regulated by dynamic changes in cell shape and behavior. Although previous studies have uncovered a central role for the non-canonical Wnt signaling pathway in neural tube closure, the underlying mechanism remains poorly resolved. Here, we show that the missing in metastasis (MIM; Mtss1) protein, previously identified as a Hedgehog response gene and actin and membrane remodeling protein, specifically binds to Daam1 and couples non-canonical Wnt signaling to neural tube closure. MIM binds to a conserved domain within Daam1, and this interaction is positively regulated by Wnt stimulation. Spatial expression of MIM is enriched in the anterior neural plate and neural folds, and depletion of MIM specifically inhibits anterior neural fold closure without affecting convergent extension movements or mesoderm cell fate specification. Particularly, we find that MIM is required for neural fold elevation and apical constriction along with cell polarization and elongation in both the superficial and deep layers of the anterior neural plate. The function of MIM during neural tube closure requires both its membrane-remodeling domain and its actin-binding domain. Finally, we show that the effect of MIM on neural tube closure is not due to modulation of Hedgehog signaling in the Xenopus embryo. Together, our studies define a morphogenetic pathway involving Daam1 and MIM that transduces non-canonical Wnt signaling for the cytoskeletal changes and membrane dynamics required for vertebrate neural tube closure.
神经管闭合是一个关键的形态发生事件,由细胞形状和行为的动态变化调控。尽管先前的研究揭示了非经典 Wnt 信号通路在神经管闭合中的核心作用,但潜在的机制仍未得到解决。在这里,我们表明,先前被鉴定为 Hedgehog 反应基因和肌动蛋白和膜重塑蛋白的转移性缺失(MIM;Mtss1)蛋白特异性结合 Daam1,并将非经典 Wnt 信号与神经管闭合偶联。MIM 结合到 Daam1 的一个保守结构域内,这种相互作用受 Wnt 刺激的正向调节。MIM 的空间表达在头神经板和神经褶中富集,MIM 的耗竭特异性抑制前神经褶闭合,而不影响会聚延伸运动或中胚层细胞命运特化。特别是,我们发现 MIM 在前神经板的浅层和深层中都需要用于神经褶抬高和顶端收缩以及细胞极化和伸长的肌动蛋白结合结构域和膜重塑结构域。在神经管闭合过程中,MIM 的功能需要其膜重塑结构域和肌动蛋白结合结构域。最后,我们表明,MIM 对神经管闭合的影响不是由于 Hedgehog 信号在 Xenopus 胚胎中的调制。总之,我们的研究定义了一个涉及 Daam1 和 MIM 的形态发生途径,该途径转导非经典 Wnt 信号,用于脊椎动物神经管闭合所需的细胞骨架变化和膜动力学。