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Btg1 is Required to Maintain the Pool of Stem and Progenitor Cells of the Dentate Gyrus and Subventricular Zone

机译:需要Btg1来维持齿状回和脑室下区域的干细胞和祖细胞池

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Btg1 belongs to a family of cell cycle inhibitory genes. We observed that Btg1 is highly expressed in adult neurogenic niches, i.e., the dentate gyrus and subventricular zone (SVZ). Thus, we generated Btg1 knockout mice to analyze the role of Btg1 in the process of generation of adult new neurons. Ablation of Btg1 causes a transient increase of the proliferating dentate gyrus stem and progenitor cells at post-natal day 7; however, at two months of age the number of these proliferating cells, as well as of mature neurons, greatly decreases compared to wild-type controls. Remarkably, adult dentate gyrus stem and progenitor cells of Btg1-null mice exit cell cycle after completing the S phase, highly express p53 and p21, and within 5 days undergo apoptosis. In SVZ we observed an equivalent decrease, associated to apoptosis, of Btg1-null stem cells, neuroblasts and neurons; furthermore, neurospheres derived from SVZ stem cells showed an age-dependent decrease of the self-renewal and expansion capacity. We conclude that the ablation of Btg1 reduces the pool of dividing adult stem and progenitor cells in dentate gyrus and SVZ by decreasing their proliferative capacity and inducing apoptosis, likely reflecting the impairment of the control of the cell cycle transition from G1 to S phase. As a result, the ability of Btg1-null mice to discriminate among overlapping contextual memories was affected. Thus, Btg1 appears to be required for maintaining adult stem and progenitor cells quiescence and self-renewal.
机译:Btg1属于细胞周期抑制基因家族。我们观察到Btg1在成年神经源性壁ni即齿状回和脑室下区(SVZ)中高度表达。因此,我们生成了Btg1基因敲除小鼠,以分析Btg1基因在成年新神经元生成过程中的作用。 Btg1的消融导致出生后第7天增殖性齿状回和祖细胞的瞬时增加;然而,与野生型对照相比,在两个月大时这些增殖细胞以及成熟神经元的数量大大减少。值得注意的是,Btg1-null小鼠的成年齿状回干细胞和祖细胞在完成S期后退出细胞周期,高表达p53和p21,并在5天内发生凋亡。在SVZ中,我们观察到与Btg1缺失的干细胞,成神经细胞和神经元的凋亡相关的降低。此外,源自SVZ干细胞的神经球表现出自我更新和扩张能力的年龄依赖性下降。我们得出的结论是,Btg1的消融通过降低它们的增殖能力并诱导凋亡来减少齿状回和SVZ中分裂的成体干细胞和祖细胞的池,这可能反映了从G1到S期的细胞周期转换控制的损害。结果,Btg1 null小鼠区分重叠的上下文记忆的能力受到影响。因此,Btg1似乎是维持成年干细胞和祖细胞静止和自我更新所必需的。

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