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首页> 外文期刊>Brain pathology >Cell cycle elongation impairs proliferation of cerebellar granule cell precursors in the Ts65Dn mouse, an animal model for Down syndrome.
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Cell cycle elongation impairs proliferation of cerebellar granule cell precursors in the Ts65Dn mouse, an animal model for Down syndrome.

机译:细胞周期延长会损害唐氏综合症的动物模型Ts65Dn小鼠的小脑颗粒细胞前体的增殖。

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Mental retardation, the hallmark of Down syndrome (DS), has been attributed to the reduced number of neurons populating the DS brain. The Ts65Dn mouse model of DS displays several anomalies analogous to those in individuals with DS, including neurogenesis impairment. The goal of the current study was to determine whether cell cycle alterations underlie neurogenesis impairment in the cerebellum of the Ts65Dn mouse and to identify the molecular mechanisms responsible for this defect. In neonatal (2-day old) Ts65Dn mice, cerebellar granule cell precursors exhibited a reduced proliferation rate (-40%) and a notable elongation (+45%) of the cell cycle. Alteration of cell cycle rate was due to elongation of the G(2) and G(1) phases. Microarray screening of cell cycle regulatory genes showed that Ts65Dn mice had a decreased expression of Cyclin B1 and Skp2, two key regulators of G(2)/M and G(1)/S transition. Results point at cell cycle elongation as major determinant of neurogenesis reduction in the cerebellum of Ts65Dn mice and suggest that this defect is specifically linked to an altered expression of two cell-cycle regulatory genes, Cyclin B1 and Skp2. These findings may establish the basis for a therapeutic approach aimed at restoring neurogenesis in the DS brain.
机译:智力低下是唐氏综合症(DS)的标志,已被归因于DS大脑中神经元数量的减少。 DS的Ts65Dn小鼠模型显示出一些与DS个体相似的异常,包括神经发生损伤。当前研究的目的是确定细胞周期改变是否是Ts65Dn小鼠小脑神经发生损害的基础,并确定造成该缺陷的分子机制。在新生(2天大)Ts65Dn小鼠中,小脑颗粒细胞前体显示出细胞周期的降低的增殖率(-40%)和显着的伸长率(+ 45%)。细胞周期率的变化是由于G(2)和G(1)相的延长。细胞周期调控基因的微阵列筛选显示,Ts65Dn小鼠的Cyclin B1和Skp2,G(2)/ M和G(1)/ S过渡的两个关键调控因子表达降低。结果表明细胞周期延长是Ts65Dn小鼠小脑神经发生减少的主要决定因素,并表明该缺陷与两个细胞周期调控基因Cyclin B1和Skp2表达的改变有关。这些发现可能为旨在恢复DS大脑神经发生的治疗方法奠定基础。

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