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首页> 外文期刊>Frontiers in Cellular Neuroscience >Function of Armcx3 and Armc10/SVH Genes in the Regulation of Progenitor Proliferation and Neural Differentiation in the Chicken Spinal Cord
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Function of Armcx3 and Armc10/SVH Genes in the Regulation of Progenitor Proliferation and Neural Differentiation in the Chicken Spinal Cord

机译:Armcx3和Armc10 / SVH基因在调节鸡脊髓祖细胞增殖和神经分化中的作用

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摘要

The eutherian X-chromosome specific family of Armcx genes has been described as originating by retrotransposition from Armc10/SVH, a single Arm-containing somatic gene. Armcx3 and Armc10/SVH are characterized by high expression in the central nervous system and they play an important role in the regulation of mitochondrial distribution and transport in neurons. In addition, Armcx/Arm10 genes have several Armadillo repeats in their sequence. In this study we address the potential role of this gene family in neural development by using the chick neural tube as a model. We show that Armc10/SVH is expressed in the chicken spinal cord, and knocking-down Armc10/SVH by sh-RNAi electroporation in spinal cord reduces proliferation of neural precursor cells (NPCs). Moreover, we analyzed the effects of murine Armcx3 and Armc10 overexpression, showing that both proteins regulate progenitor proliferation, while Armcx3 overexpression also specifically controls neural maturation. We show that the phenotypes found following Armcx3 overexpression require its mitochondrial localization, suggesting a novel link between mitochondrial dynamics and regulation of neural development. Furthermore, we found that both Armcx3 and Armc10 may act as inhibitors of Wnt-β-catenin signaling. Our results highlight both common and differential functions of Armcx/Armc10 genes in neural development in the spinal cord.
机译:已描述了Armcx基因的Etherian X染色体特异性家族是通过逆转自Armc10 / SVH(一种含Arm的体细胞基因)而产生的。 Armcx3和Armc10 / SVH的特征是在中枢神经系统中高表达,在调节神经元线粒体的分布和运输中起着重要作用。另外,Armcx / Arm10基因的序列中有多个犰狳重复序列。在这项研究中,我们通过使用小鸡神经管作为模型来解决该基因家族在神经发育中的潜在作用。我们显示Armc10 / SVH在鸡脊髓中表达,并且通过sh-RNAi电穿孔在脊髓中敲低Armc10 / SVH可以减少神经前体细胞(NPC)的增殖。此外,我们分析了小鼠Armcx3和Armc10过表达的影响,表明这两种蛋白均调节祖细胞的增殖,而Armcx3过表达还专门控制神经成熟。我们表明,在Armcx3过表达后发现的表型需要其线粒体定位,这表明线粒体动力学与神经发育调节之间存在新型联系。此外,我们发现Armcx3和Armc10均可以充当Wnt-β-catenin信号的抑制剂。我们的研究结果突出了Armcx / Armc10基因在脊髓神经发育中的共同和差异功能。

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