Lee Susie A, Shen Ellen L, Fiser Andras, Sali Andrej, Guo Su
Department of Biopharmaceutical Sciences, University of California, San Francisco, CA 94143-0446, USA.
Development. 2003 Jun;130(12):2669-79. doi: 10.1242/dev.00502.
Vertebrate epibranchial placodes give rise to visceral sensory neurons that transmit vital information such as heart rate, blood pressure and visceral distension. Despite the pivotal roles they play, the molecular program underlying their development is not well understood. Here we report that the zebrafish mutation no soul, in which epibranchial placodes are defective, disrupts the fork headrelated, winged helix domain-containing protein Foxi1. Foxi1 is expressed in lateral placodal progenitor cells. In the absence of foxi1 activity, progenitor cells fail to express the basic helix-loop-helix gene neurogenin that is essential for the formation of neuronal precursors, and the paired homeodomain containing gene phox2a that is essential for neuronal differentiation and maintenance. Consequently, increased cell death is detected indicating that the placodal progenitor cells take on an apoptotic pathway. Furthermore, ectopic expression of foxi1 is sufficient to induce phox2a-positive and neurogenin-positive cells. Taken together, these findings suggest that Foxi1 is an important determination factor for epibranchial placodal progenitor cells to acquire both neuronal fate and subtype visceral sensory identity.
脊椎动物的鳃上神经节会产生内脏感觉神经元,这些神经元传递诸如心率、血压和内脏扩张等重要信息。尽管它们发挥着关键作用,但其发育背后的分子程序仍未得到充分理解。在此,我们报告斑马鱼突变体“无灵魂”,其鳃上神经节存在缺陷,该突变破坏了含有叉头相关的、有翼螺旋结构域的蛋白质Foxi1。Foxi1在外侧神经节祖细胞中表达。在缺乏foxi1活性的情况下,祖细胞无法表达对神经元前体形成至关重要的碱性螺旋-环-螺旋基因神经生成素,以及对神经元分化和维持至关重要的含配对同源结构域的基因phox2a。因此,检测到细胞死亡增加,表明神经节祖细胞走上了凋亡途径。此外,foxi1的异位表达足以诱导phox2a阳性和神经生成素阳性细胞。综上所述,这些发现表明Foxi1是鳃上神经节祖细胞获得神经元命运和内脏感觉亚型身份的重要决定因素。