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Bmi-1 over-expression in neural stem/progenitor cells increases proliferation and neurogenesis in culture but has little effect on these functions in vivo

机译:Bmi-1在神经干/祖细胞中的过表达增加了培养物中的增殖和神经发生但对体内这些功能几乎没有影响

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摘要

The Polycomb gene Bmi-1 is required for the self-renewal of stem cells from diverse tissues, including the central nervous system (CNS). Bmi-1 expression is elevated in most human gliomas, irrespective of grade, raising the question of whether Bmi-1 over-expression is sufficient to promote self-renewal or tumorigenesis by CNS stem/progenitor cells. To test this we generated Nestin-Bmi-1-GFP transgenic mice. Analysis of two independent lines with expression in the fetal and adult CNS demonstrated that transgenic neural stem cells formed larger colonies, more self-renewing divisions, and more neurons in culture. However, in vivo, Bmi-1 over-expression had little effect on CNS stem cell frequency, subventricular zone proliferation, olfactory bulb neurogenesis, or neurogenesis/gliogenesis during development. Bmi-1 transgenic mice were born with enlarged lateral ventricles and a minority developed idiopathic hydrocephalus as adults, but none of the transgenic mice formed detectable CNS tumors, even when aged. The more pronounced effects of Bmi-1 over-expression in culture were largely attributable to the attenuated induction of p16Ink4a and p19Arf in culture, proteins that are generally not expressed by neural stem/progenitor cells in young mice in vivo. Bmi-1 over-expression therefore has more pronounced effects in culture and does not appear to be sufficient to induce tumorigenesis in vivo.
机译:Polycomb基因Bmi-1是多种组织(包括中枢神经系统(CNS))的干细胞自我更新所必需的。在大多数人类神经胶质瘤中,不论其等级如何,Bmi-1的表达都升高,这引发了一个问题,即Bmi-1的过度表达是否足以促进CNS干/祖细胞的自我更新或肿瘤发生。为了测试这一点,我们生成了Nestin-Bmi-1-GFP转基因小鼠。对胎儿和成年中枢神经系统中表达的两个独立系的分析表明,转基因神经干细胞在培养物中形成了更大的菌落,更多的自我更新分裂和更多的神经元。然而,在体内,Bmi-1的过表达对中枢神经系统干细胞的频率,脑室下区域的增殖,嗅球神经发生或发育过程中的神经发生/神经胶质形成几乎没有影响。 Bmi-1转基因小鼠出生时侧脑室增大,少数成年人成年后发展为特发性脑积水,但即使年龄增长,也没有一种可检测到CNS肿瘤。 Bmi-1在培养物中过度表达的更为明显的作用在很大程度上归因于培养物中p16 Ink4a 和p19 Arf 的诱导减弱,而蛋白通常不表达。幼鼠体内的神经干/祖细胞。因此,Bmi-1的过表达在培养中具有更明显的作用,并且似乎不足以在体内诱导肿瘤发生。

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