Matsuzaki M, Saigo K
Department of Biophysics and Biochemistry, University of Tokyo, Bunkyo-ku, Japan.
Development. 1996 Nov;122(11):3567-75. doi: 10.1242/dev.122.11.3567.
The hedgehog gene product, secreted from engrailed-expressing neuroectoderm, is required for the formation of post-S1 neuroblasts in rows 2, 5 and 6. The hedgehog protein functions not only as a paracrine but also as an autocrine factor and its transient action on the neuroectoderm 1-2 hours (at 18 degrees C) prior to neuroblast delamination is necessary and sufficient to form normal neuroblasts. In contrast to epidermal development, hedgehog expression required for neuroblast formation is regulated by neither engrailed nor wingless. hedgehog and wingless bestow composite positional cues on the neuroectodermal regions for S2-S4 neuroblasts at virtually the same time and, consequently, post-S1 neuroblasts in different rows can acquire different positional values along the anterior-posterior axis. The average number of proneural cells for each of three eagle-positive S4-S5 neuroblasts was found to be 5-9, the same for S1 NBs. As with wingless (Chu-LaGraff et al., Neuron 15, 1041-1051, 1995), huckebein expression in putative proneural regions for certain post-S1 neuroblasts is under the control of hedgehog. hedgehog and wingless are involved in separate, parallel pathways and loss of either is compensated for by the other in NB 7-3 formation. NBs 6-4 and 7-3, arising from the engrailed domain, were also found to be specified by the differential expression of two homeobox genes, gooseberry-distal and engrailed.
由表达engrailed的神经外胚层分泌的刺猬基因产物,是第2、5和6排S1后神经母细胞形成所必需的。刺猬蛋白不仅作为旁分泌因子起作用,还作为自分泌因子起作用,并且在神经母细胞分层前1-2小时(在18摄氏度时)对神经外胚层的短暂作用对于形成正常神经母细胞是必要且充分的。与表皮发育相反,神经母细胞形成所需的刺猬蛋白表达既不受engrailed也不受无翅基因的调控。刺猬蛋白和无翅基因几乎在同一时间赋予神经外胚层区域关于S2-S4神经母细胞的复合位置线索,因此,不同排的S1后神经母细胞可以沿着前后轴获得不同的位置值。发现三个eagle阳性的S4-S5神经母细胞中每个的原神经细胞平均数量为5-9个,与S1神经母细胞相同。与无翅基因的情况一样(Chu-LaGraff等人,《神经元》15卷,1041-1051页,1995年),刺猬蛋白控制某些S1后神经母细胞假定原神经区域中的huckebein表达。刺猬蛋白和无翅基因参与独立的平行途径,在NB 7-3形成过程中,任何一个的缺失都会由另一个来补偿。还发现源自engrailed区域的NB 6-4和NB 7-3是由两个同源框基因——gooseberry-distal和engrailed的差异表达所特化的。