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首页> 外文期刊>Stem Cells >Conditional activation of Bmi1 expression regulates self-renewal, apoptosis, and differentiation of neural stem/progenitor cells in vitro and in vivo.
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Conditional activation of Bmi1 expression regulates self-renewal, apoptosis, and differentiation of neural stem/progenitor cells in vitro and in vivo.

机译:Bmi1表达的条件激活在体外和体内调节神经干/祖细胞的自我更新,凋亡和分化。

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摘要

The Polycomb group protein Bmi1 is a key regulator of self-renewal of embryonic and adult central nervous system stem cells, and its overexpression has been shown to occur in several types of brain tumors. In a Cre/LoxP-based conditional transgenic mouse model, we show that fine-tuning of Bmi1 expression in embryonic neural stem cell (NSC) is sufficient to increase their proliferation and self-renewal potential both in vitro and in vivo. This is linked to downregulation of both the ink4a/ARF and the p21/Foxg1 axes. However, increased and ectopic proliferation induced by overexpression of Bmi1 in progenitors committed toward a neuronal lineage during embryonic cortical development, triggers apoptosis through a survivin-mediated mechanism and leads to reduced brain size. Postnatally, however, increased self-renewal capacity of neural stem/progenitor cells (NSPC) is independent of Foxg1 and resistance to apoptosis is observed in neural progenitors derived from NSC-overexpressing Bmi1. Neoplastic transformation is absent in mice-overexpressing Bmi1 aged up to 20 months. These studies provide strong evidence that fine tuning of Bmi1 expression is a viable tool to increase self-renewal capacity of NSCs both in vitro and in vivo without eliciting neoplastic transformation of these cells.
机译:Polycomb组蛋白Bmi1是胚胎和成年中枢神经系统干细胞自我更新的关键调节剂,它的过表达已显示在几种类型的脑肿瘤中。在基于Cre / LoxP的条件转基因小鼠模型中,我们表明,在胚胎神经干细胞(NSC)中Bmi1表达的微调足以增加它们在体外和体内的增殖和自我更新的潜力。这与ink4a / ARF和p21 / Foxg1轴的下调有关。然而,在胚胎皮层发育过程中,Bmi1在神经元系的祖细胞中过表达会引起Bmi1的过度表达和异位增殖,并通过survivin介导的机制触发凋亡,并导致脑尺寸减小。然而,产后,神经干/祖细胞(NSPC)的自我更新能力增强与Foxg1无关,并且在源自过表达NSC的Bmi1的神经祖细胞中观察到对细胞凋亡的抗性。小鼠过度表达的Bmi1年龄长达20个月时不存在赘生性转化。这些研究提供了有力的证据,表明Bmi1表达的微调是增加体外和体内NSC自我更新能力而不引起这些细胞赘生性转化的可行工具。

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