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Gbx1 and Gbx2 Are Essential for Normal Patterning and Development of Interneurons and Motor Neurons in the Embryonic Spinal Cord

机译:Gbx1和Gbx2对于正常模式以及胚胎脊髓中神经元和运动神经元的发育至关重要

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摘要

The molecular mechanisms regulating neurogenesis involve the control of gene expression by transcription factors. and , two members of the Gbx family of homeodomain-containing transcription factors, are known for their essential roles in central nervous system development. The expression domains of mouse and include regions of the forebrain, anterior hindbrain, and spinal cord. In the spinal cord, and are expressed in PAX2 interneurons of the dorsal horn and ventral motor neuron progenitors. Based on their shared domains of expression and instances of overlap, we investigated the functional relationship between family members in the developing spinal cord using , , and / embryos. In situ hybridization analyses of embryonic spinal cords show upregulation of expression in embryos and upregulation of expression in embryos. Additionally, our data demonstrate that genes regulate development of a subset of PAX2 dorsal inhibitory interneurons. While we observe no difference in overall proliferative status of the developing ependymal layer, expansion of proliferative cells into the anatomically defined mantle zone occurs in mutants. Lastly, our data shows a marked increase in apoptotic cell death in the ventral spinal cord of mutants during mid-embryonic stages. While our studies reveal that both members of the gene family are involved in development of subsets of PAX2 dorsal interneurons and survival of ventral motor neurons, and are not sufficient to genetically compensate for the loss of one another. Thus, our studies provide novel insight to the relationship harbored between and in spinal cord development.
机译:调节神经发生的分子机制涉及通过转录因子控制基因表达。和,是Gbx家族中含有同源域的转录因子的成员,在中枢神经系统发育中起着至关重要的作用。小鼠的表达结构域包括前脑,后脑和脊髓区域。在脊髓中,并在背角和腹侧运动神经元祖细胞的PAX2中间神经元中表达。基于它们共享的表达域和重叠实例,我们使用,和/胚胎研究了脊髓发育中家族成员之间的功能关系。胚胎脊髓的原位杂交分析显示胚胎中表达的上调和胚胎中表达的上调。此外,我们的数据表明基因调节PAX2背抑制中间神经元的子集的发展。虽然我们观察到发育中的室管膜层的总体增殖状态没有差异,但在突变体中发生了增殖细胞向解剖学定义的套膜区扩展。最后,我们的数据显示,在胚胎中期,突变体腹侧脊髓的凋亡细胞死亡显着增加。尽管我们的研究表明该基因家族的两个成员都参与了PAX2背中间神经元的亚群的发育和腹侧运动神经元的存活,但不足以通过遗传方式弥补彼此的损失。因此,我们的研究为脊髓发育之间及其之间的关系提供了新颖的见解。

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