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The microRNA cluster miR-106b~25 regulates adult neural stem/progenitor cell proliferation and neuronal differentiation

机译:microRNA簇miR-106b〜25调节成年神经干/祖细胞增殖和神经元分化

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摘要

In adult mammals, neural stem cells (NSCs) generate new neurons that are important for specific types of learning and memory. Controlling adult NSC number and function is fundamental for preserving the stem cell pool and ensuring proper levels of neurogenesis throughout life. Here we study the importance of the microRNA gene cluster miR-106b~25 (miR-106b, miR-93, and miR-25) in primary cultures of neural stem/progenitor cells (NSPCs) isolated from adult mice. We find that knocking down miR-25 decreases NSPC proliferation, whereas ectopically expressing miR-25 promotes NSPC proliferation. Expressing the entire miR-106b~25 cluster in NSPCs also increases their ability to generate new neurons. Interestingly, miR-25 has a number of potential target mRNAs involved in insulin/insulin-like growth factor-1 (IGF) signaling, a pathway implicated in aging. Furthermore, the regulatory region of miR-106b~25 is bound by FoxO3, a member of the FoxO family of transcription factors that maintains adult stem cells and extends lifespan downstream of insulin/IGF signaling. These results suggest that miR-106b~25 regulates NSPC function and is part of a network involving the insulin/IGF-FoxO pathway, which may have important implications for the homeostasis of the NSC pool during aging.
机译:在成年哺乳动物中,神经干细胞(NSC)产生新的神经元,这些神经元对于特定类型的学习和记忆很重要。控制成人NSC的数量和功能对于维持干细胞库并确保一生中适当的神经发生水平至关重要。在这里,我们研究了从成年小鼠分离的神经干/祖细胞(NSPC)的原代培养物中microRNA基因簇miR-106b〜25(miR-106b,miR-93和miR-25)的重要性。我们发现,敲低miR-25会降低NSPC增殖,而异位表达miR-25则会促进NSPC增殖。在NSPC中表达整个miR-106b〜25簇也增加了它们产生新神经元的能力。有趣的是,miR-25具有参与胰岛素/胰岛素样生长因子-1(IGF)信号传导(与衰老有关的信号通路)的许多潜在靶标mRNA。此外,miR-106b〜25的调控区与FoxO3结合,FoxO3是FoxO转录因子家族的成员,可维持成体干细胞并延长胰岛素/ IGF信号传导下游的寿命。这些结果表明,miR-106b〜25调节NSPC功能,并且是涉及胰岛素/ IGF-FoxO途径的网络的一部分,这可能对衰老过程中NSC池的稳态具有重要意义。

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