Yoshida M, Suda Y, Matsuo I, Miyamoto N, Takeda N, Kuratani S, Aizawa S
Department of Morphogenesis, Institute of Molecular Embryology and Genetics (IMEG), Kumamoto University School of Medicine, Japan.
Development. 1997 Jan;124(1):101-11. doi: 10.1242/dev.124.1.101.
The genes Emx1 and Emx2 are mouse cognates of a Drosophila head gap gene, empty spiracles, and their expression patterns have suggested their involvement in regional patterning of the forebrain. To define their functions we introduced mutations into these loci. The newborn Emx2 mutants displayed defects in archipallium structures that are believed to play essential roles in learning, memory and behavior: the dentate gyrus was missing, and the hippocampus and medial limbic cortex were greatly reduced in size. In contrast, defects were subtle in adult Emx1 mutant brain. In the early developing Emx2 mutant forebrain, the evagination of cerebral hemispheres was reduced and the roof between the hemispheres was expanded, suggesting the lateral shift of its boundary. Defects were not apparent, however, in the region where Emx1 expression overlaps that of Emx2, nor was any defect found in the early embryonic forebrain caused by mutation of the Emx1 gene, of which expression principally occurs within the Emx2-positive region. Emx2 most likely delineates the palliochoroidal boundary in the absence of Emx1 expression during early dorsal forebrain patterning. In the more lateral region of telencephalon, Emx2-deficiency may be compensated for by Emx1 and vice versa. Phenotypes of newborn brains also suggest that these genes function in neurogenesis corresponding to their later expressions.
基因Emx1和Emx2是果蝇头部间隙基因“空气门”的小鼠同源基因,它们的表达模式表明它们参与了前脑的区域模式形成。为了确定它们的功能,我们在这些基因座中引入了突变。新生的Emx2突变体在原脑结构中表现出缺陷,这些结构被认为在学习、记忆和行为中起重要作用:齿状回缺失,海马体和内侧边缘皮质的大小大幅减小。相比之下,成年Emx1突变体大脑中的缺陷很细微。在早期发育的Emx2突变体前脑中,大脑半球的外翻减少,半球之间的顶部扩大,表明其边界发生了侧向移动。然而,在Emx1表达与Emx2表达重叠的区域,缺陷并不明显,而且Emx1基因突变导致的早期胚胎前脑也未发现任何缺陷,Emx1的表达主要发生在Emx2阳性区域内。在早期背侧前脑模式形成过程中,在没有Emx1表达的情况下,Emx2很可能描绘了苍白脉络膜边界。在端脑更外侧的区域,Emx2的缺陷可能由Emx1补偿,反之亦然。新生大脑的表型也表明这些基因在与其后期表达相对应的神经发生中发挥作用。