Ma Q, Sommer L, Cserjesi P, Anderson D J
Division of Biology 216-76, Howard Hughes Medical Institute, California Institute of Technology, Pasadena, California 91125, USA.
J Neurosci. 1997 May 15;17(10):3644-52. doi: 10.1523/JNEUROSCI.17-10-03644.1997.
Genetic studies in Drosophila and in vertebrates have implicated basic helix-loop-helix (bHLH) genes in neuronal fate determination and cell type specification. We have compared directly the expression of Mash1 and neurogenin1 (ngn1), two bHLH genes that are expressed specifically at early stages of neurogenesis. In the PNS these genes are expressed in complementary autonomic and sensory lineages. In the CNS in situ hybridization to serial sections and double-labeling experiments indicate that Mash1 and ngn1 are expressed in adjacent and nonoverlapping regions of the neuroepithelium that correspond to future functionally distinct areas of the brain. We also showed that in the PNS several other bHLH genes exhibit similar lineal restriction, as do ngn1 and Mash1, suggesting that complementary cascades of bHLH factors are involved in PNS development. Finally, we found that there is a close association between expression of ngn1 and Mash1 and that of two Notch ligands. These observations suggest a basic plan for vertebrate neurogenesis whereby regionalization of the neuroepithelium is followed by activation of a relatively small number of bHLH genes, which are used repeatedly in complementary domains to promote neural determination and differentiation.
对果蝇和脊椎动物的遗传学研究表明,基本螺旋-环-螺旋(bHLH)基因与神经元命运决定和细胞类型特化有关。我们直接比较了Mash1和神经生成素1(ngn1)这两个bHLH基因的表达,它们在神经发生的早期阶段特异性表达。在周围神经系统(PNS)中,这些基因在互补的自主神经和感觉谱系中表达。在中枢神经系统(CNS)中,对连续切片的原位杂交和双标记实验表明,Mash1和ngn1在神经上皮的相邻且不重叠区域表达,这些区域对应于未来大脑功能不同的区域。我们还表明,在PNS中,其他几个bHLH基因与ngn1和Mash1一样表现出类似的谱系限制,这表明bHLH因子的互补级联参与了PNS的发育。最后,我们发现ngn1和Mash1的表达与两种Notch配体的表达之间存在密切关联。这些观察结果提示了脊椎动物神经发生的基本模式,即神经上皮区域化之后,激活相对少量的bHLH基因,这些基因在互补区域中反复使用以促进神经决定和分化。