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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >R-Ras1 and R-Ras2 Are Essential for Oligodendrocyte Differentiation and Survival for Correct Myelination in the Central Nervous System
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R-Ras1 and R-Ras2 Are Essential for Oligodendrocyte Differentiation and Survival for Correct Myelination in the Central Nervous System

机译:R-RAS1和R-RAS2对于中枢神经系统中的正确髓鞘产生的少突胶质细胞分化和存活至关重要

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Rapid and effective neural transmission of information requires correct axonal myelination. Modifications in myelination alter axonal capacity to transmit electric impulses and enable pathological conditions. In the CNS, oligodendrocytes (OLs) myelinate axons, a complex process involving various cellular interactions. However, we know little about the mechanisms that orchestrate correct myelination. Here, we demonstrate that OLs express R-Ras1 and R-Ras2. Using female and male mutant mice to delete these proteins, we found that activation of the PI3K/Akt and Erk1/2-MAPK pathways was weaker in mice lacking one or both of these GTPases, suggesting that both proteins coordinate the activity of these two pathways. Loss of R-Ras1 and/or R-Ras2 diminishes the number of OLs in major myelinated CNS tracts and increases the proportion of immature OLs. In R-Ras1(-/-) and R-Ras2(-/-)-null mice, OLs show aberrant morphologies and fail to differentiate correctly into myelin-forming phenotypes. The smaller OL population and abnormal OL maturation induce severe hypomyelination, with shorter nodes of Ranvier in R-Ras1(-/-) and/or R-Ras2(-/-) mice. These defects explain the slower conduction velocity of myelinated axons that we observed in the absence of R-Ras1 and R-Ras2. Together, these results suggest that R-Ras1 and R-Ras2 are upstream elements that regulate the survival and differentiation of progenitors into OLs through the PI3K/Akt and Erk1/2-MAPK pathways for proper myelination.
机译:快速且有效的神经传输信息需要正确的轴突髓鞘。修饰髓鞘改变改变轴突能力,传递电动冲动并实现病理条件。在CNS中,少突胶质细胞(OLS)髓鞘轴突,涉及各种细胞相互作用的复杂过程。然而,我们对协调矫正髓鞘产生的机制很少。在这里,我们证明OLS表达R-RAS1和R-RAS2。使用女性和雄性突变小鼠删除这些蛋白质,我们发现PI3K / AKT和ERK1 / 2-MAPK途径的激活在缺乏其中一种或两种这些GTP酶的小鼠中较弱,这表明两种蛋白质都协调这两个途径的活性。 R-RAS1和/或R-RAS2的丧失减少了主要的肢体化CNS暗物中的OLS数量,并增加了未成熟的OLS的比例。在R-RAS1( - / - )和R-RAS2( - / - ) - 零小鼠中,OLS显示异常形态,并且未能将正确分化为髓鞘形成表型。较小的OL群体和异常成熟诱导严重的低钙化,R-RAS1( - / - )和/或R-ras2( - / - )小鼠中的ranvier节点短。这些缺陷解释了在没有R-RAS1和R-RAS2的情况下观察到的粒细胞轴突的较慢的传导速度。这些结果表明,R-RAS1和R-RAS2是通过PI3K / AKT和ERK1 / 2-MAPK途径调节祖细胞的存活率和分化在OLS中,以进行适当的髓鞘。

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