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beta-catenin signals regulate cell growth and the balance between progenitor cell expansion and differentiation in the nervous system

机译:β-catenin信号调节神经系统中细胞的生长以及祖细胞扩增和分化之间的平衡

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beta-Catenin is an essential component of the canonical Wnt signaling system that controls decisive steps in development. We employed here two conditional beta-catenin mutant alleles to alter beta-catenin signaling in the central nervous system of mice: one allele to ablate beta-catenin and the second allele to express a constitutively active beta-catenin. The tissue mass of the spinal cord and brain is reduced after ablation of beta-catenin, and the neuronal precursor population is not maintained. In contrast, the spinal cord and brain of mice that express activated beta-catenin is much enlarged in mass, and the neuronal precursor population is increased in size. P-Catenin signals are thus essential for the maintenance of proliferation of neuronal progenitors, controlling the size of the progenitor pool, and impinging on the decision of neuronal progenitors to proliferate or to differentiate. (C) 2003 Elsevier Science (USA). All rights reserved. [References: 54]
机译:β-Catenin是经典Wnt信号系统的重要组成部分,可控制发育中的决定性步骤。我们在这里采用了两个条件性β-catenin突变等位基因来改变小鼠中枢神经系统中的β-catenin信号传导:一个等位基因可消融β-catenin,第二个等位基因可表达组成性活性β-catenin。消融β-catenin后,脊髓和大脑的组织质量减少,并且神经元前体群体无法维持。相反,表达活化的β-catenin的小鼠的脊髓和大脑的质量大大增加,并且神经元前体的数量增加。因此,P-连环蛋白信号对于维持神经元祖细胞的增殖,控制祖细胞库的大小以及影响神经元祖细胞增殖或分化的决定至关重要。 (C)2003 Elsevier Science(美国)。版权所有。 [参考:54]

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