首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Mouse orthologue of ARX, a gene mutated in several X-linked forms of mental retardation and epilepsy, is a marker of adult neural stem cells and forebrain GABAergic neurons.
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Mouse orthologue of ARX, a gene mutated in several X-linked forms of mental retardation and epilepsy, is a marker of adult neural stem cells and forebrain GABAergic neurons.

机译:ARX的小鼠直系同源物是一种以X连锁形式的智力低下和癫痫症突变的基因,是成人神经干细胞和前脑GABA能神经元的标志物。

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Mutations in the human ARX gene show unusually heterogeneous clinical presentations, including syndromic and nonsyndromic mental retardation, myoclonic epilepsy with spasticity, and lissencephaly with abnormal genitalia, that are believed to arise from an impairment of the embryonic mechanisms building the anterior central nervous system structures. Here, we show that the murine ortholog Arx has a highly dynamic expression pattern during both early shaping of the forebrain vesicle and later major events of neural migrations and cell-type specification. Early on, the Arx gene is specifically activated in anterior forebrain anlage. Afterward, Arx expression is confined to the telencephalic vesicles and is enhanced during differentiation of the subpallial structures of the ganglionic eminences, overlapping with Dlx2, Dlx5, and Gad1 transcriptional domains. Tangentially migrating neurons reaching the cortical plate are also Arx-positive at all embryonic stages analyzed. RNA-protein colabeling staining shows that Arx expression is maintained in the mature cortical interneurons, suggesting its involvement in the different functions of the gamma-aminobutyric acid (GABA)ergic neurons settled into the adult cerebral cortex. Finally, Arx expression is detected in the anterior subventricular layer of the adult brain, where neural stem cells have been shown to be located. Of interest, Arx expression is highly up-regulated during in vitro differentiation of pure neural stem cell cultures retrieved from adult brain. All together, these findings suggest Arx as a gene involved in the commitment of proliferating neuroblasts into a GABAergic neuronal fate. In conclusion, our mouse Arx expression data provide important further insights into the puzzling complexity of the human ARX mutation pleiotropy.
机译:人类ARX基因中的突变显示出异常的异质临床表现,包括综合征和非综合征性智力低下,肌阵挛性癫痫伴痉挛和生殖器畸形的小脑症,据信这是由于建立前中枢神经系统结构的胚胎机制受损所致。在这里,我们表明,小鼠直系同源蛋白Arx在前脑囊泡的早期成形以及后来的神经迁移和细胞类型规范的主要事件中都具有高度动态的表达模式。早期,Arx基因在前脑前壁特异性激活。此后,Arx表达被限制在端脑小泡中,并在神经节突起的丘脑下结构分化过程中增强,与Dlx2,Dlx5和Gad1转录域重叠。在所分析的所有胚胎阶段,到达皮质板的切向迁移神经元也是Arx阳性的。 RNA-蛋白质共标记染色显示Arx在成熟的皮质中间神经元中得以维持,表明它参与了安定在成人大脑皮层中的γ-氨基丁酸(GABA)能量神经元的不同功能。最后,在成人大脑的前脑室下层中检测到了Arx的表达,神经干细胞已被定位在该处。有趣的是,在从成年大脑中获取的纯神经干细胞培养物的体外分化过程中,Arx表达高度上调。总之,这些发现表明Arx是参与将成神经细胞增殖为GABA能神经元命运的基因。总之,我们的小鼠Arx表达数据为人类ARX突变多效性令人困惑的复杂性提供了重要的进一步见解。

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