Departamento Biología del Desarrollo, INSIBIO (CONICET-Universidad Nacional de Tucumán), Chacabuco 461, San Miguel de Tucumán, Argentina.
Dev Biol. 2012 Apr 15;364(2):99-113. doi: 10.1016/j.ydbio.2012.01.020. Epub 2012 Jan 28.
Neural crest induction is the result of the combined action at the neural plate border of FGF, BMP, and Wnt signals from the neural plate, mesoderm and nonneural ectoderm. In this work we show that the expression of Indian hedgehog (Ihh, formerly named Banded hedgehog) and members of the Hedgehog pathway occurs at the prospective neural fold, in the premigratory and migratory neural crest. We performed a functional analysis that revealed the requirement of Ihh signaling in neural crest development. During the early steps of neural crest induction loss of function experiments with antisense morpholino or locally grafted cyclopamine-loaded beads suppressed the expression of early neural crest markers concomitant with the increase in neural and epidermal markers. We showed that changes in Ihh activity produced no alterations in either cell proliferation or apoptosis, suggesting that this signal involves cell fate decisions. A temporal analysis showed that Hedgehog is continuously required not only in the early and late specification but also during the migration of the neural crest. We also established that the mesodermal source of Ihh is important to maintain specification and also to support the migratory process. By a combination of embryological and molecular approaches our results demonstrated that Ihh signaling drives in the migration of neural crest cells by autocrine or paracrine mechanisms. Finally, the abrogation of Ihh signaling strongly affected only the formation of cartilages derived from the neural crest, while no effects were observed on melanocytes. Taken together, our results provide insights into the role of the Ihh cell signaling pathway during the early steps of neural crest development.
神经嵴诱导是神经板边界处的 FGF、BMP 和 Wnt 信号与来自神经板、中胚层和非神经外胚层的共同作用的结果。在这项工作中,我们表明,印度刺猬(Ihh,以前称为带刺刺猬)和刺猬途径的成员在预期的神经褶皱中表达,在前迁移和迁移的神经嵴中。我们进行了功能分析,揭示了 Ihh 信号在神经嵴发育中的必要性。在神经嵴诱导的早期步骤中,用反义 morpholino 或局部移植的环巴胺加载珠进行功能丧失实验,抑制了早期神经嵴标记物的表达,同时增加了神经和表皮标记物。我们表明,Ihh 活性的变化不会导致细胞增殖或凋亡的改变,这表明该信号涉及细胞命运决定。时间分析表明,Hedgehog 不仅在早期和晚期特异性中而且在神经嵴的迁移过程中都连续需要。我们还确定 Ihh 的中胚层来源对于维持特异性和支持迁移过程很重要。通过胚胎学和分子方法的结合,我们的结果表明,Ihh 信号通过自分泌或旁分泌机制驱动神经嵴细胞的迁移。最后,Ihh 信号的阻断仅强烈影响源自神经嵴的软骨的形成,而对黑素细胞没有影响。总之,我们的结果提供了对 Ihh 细胞信号通路在神经嵴发育早期步骤中的作用的深入了解。