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Emx2基因缺陷的齿状回中bHLH基因表达揭示颗粒细胞缺陷以及迁移前体细胞缺失。

bHLH gene expression in the Emx2-deficient dentate gyrus reveals defective granule cells and absence of migrating precursors.

作者信息

Oldekamp Judit, Kraemer Nadine, Alvarez-Bolado Gonzalo, Skutella Thomas

机构信息

Max-Planck-Institute of Experimental Endocrinology, 30625 Hannover, Germany.

出版信息

Cereb Cortex. 2004 Sep;14(9):1045-58. doi: 10.1093/cercor/bhh064. Epub 2004 Apr 14.

Abstract

Dentate gyrus development is uniquely characterized by the existence of migrating precursors. The production of precursors by the neuroepithelium is regulated by the proneural cascade of bHLH genes, which show distinctive expression patterns in dentate. Mice carrying a mutation in Emx2, a neuroepithelial transcription factor, lack the granule cell layer which forms most of the dentate, although the corresponding neuroepithelium is correctly specified. To understand this phenotype, we have analyzed the expression of proneural genes (bHLH gene family) and other markers in Emx2-deficient dentate. Here we show that, in the mutant dentate, expression of bHLH genes, Tenascin C and GFAP is abnormally confined to the germinal layer, as are most neuronal and astrocytic precursors. Additionally, Mash1 expression (marker of migrating precursors) is lost during development. Mutant granule cells show arrested migration and lack NeuroD2 expression. These results are evidence that in Emx2 mutants, migrating precursors (secondary matrix) and astrocytes are absent, the radial migration substrate impaired and granule cells deficiently differentiated. Our analysis gives insight into how a general defect caused by the absence of Emx2 translates into the dentate-specific phenotype.

摘要

齿状回的发育具有独特的特征,即存在迁移前体细胞。神经上皮产生前体细胞受bHLH基因的神经源性级联调控,这些基因在齿状回呈现出独特的表达模式。携带神经上皮转录因子Emx2突变的小鼠缺乏构成大部分齿状回的颗粒细胞层,尽管相应的神经上皮已正确分化。为了解这一表型,我们分析了Emx2缺陷型齿状回中神经源性基因(bHLH基因家族)和其他标志物的表达。在此我们表明,在突变型齿状回中,bHLH基因、肌腱蛋白C和胶质纤维酸性蛋白(GFAP)的表达异常局限于生发层,大多数神经元和星形胶质前体细胞也是如此。此外,Mash1表达(迁移前体细胞的标志物)在发育过程中缺失。突变型颗粒细胞显示迁移停滞且缺乏NeuroD2表达。这些结果证明,在Emx2突变体中,迁移前体细胞(次级基质)和星形胶质细胞缺失,放射状迁移底物受损,颗粒细胞分化不足。我们的分析深入了解了Emx2缺失导致的一般缺陷如何转化为齿状回特异性表型。

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