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Regulation of microRNA expression in the neuronal stem cell niches during aging of the short-lived annual fish Nothobranchius furzeri

机译:短命一年生鱼类Nothobranchius furzeri衰老过程中神经元干细胞生态位中microRNA表达的调节

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摘要

In the last decade, our group has intensively studied the annual fish Nothobranchius furzeri as a new experimental model in Biology specifically applied to aging research. We previously studied adult neuronal stem cells of N. furzeri in vivo and we demonstrated an age-dependent decay in adult neurogenesis. More recently we identified and quantified the expression of miRNAs in the brain of N. furzeri and we detected 165 conserved miRNAs and found that brain aging in this fish is associated with coherent up-regulation of well-known tumor suppressor miRNAs, as well as down-regulation of well-known onco miRNAs~– In the present work we characterized the expression of miR-15a, miR-20a, and microRNA cluster 17–92 in the principal neurogenic niches of the brain of young and old subjects of N. furzeri, by using in situ hybridization techniques, together with proliferating-cell nuclear antigen immuno-staining for a simultaneous visualization of the neuronal progenitors. We found that: (1) the expression of miR-15a is higher in the brain of old subjects and concentrates mainly in the principal neurogenic niches of telencephalon and optic tectum, (2) the expression of miR-20a is higher in the brain of young subjects, but more widespread to the areas surrounding the neurogenic niches, (3) finally, the expression of the microRNA cluster 17–92 is higher in the brain of young subjects, concentrated mainly in the principal neurogenic niches of telencephalon and cerebellum, and with reduced intensity in the optic tectum. Taken together, our data show that these microRNAs, originally identified in whole-brain analysis, are specifically regulated in the stem cell niche during aging.
机译:在过去的十年中,我们小组深入研究了一年生鱼类Nothobranchius furzeri,将其作为专门用于老化研究的生物学新实验模型。我们以前在体内研究了Furzeri的成年神经干细胞,并且我们证明了成年神经发生中年龄依赖性衰变。最近,我们鉴定并定量了糠zer猪笼草大脑中miRNA的表达,我们检测到165个保守的miRNA,发现这条鱼的大脑衰老与众所周知的肿瘤抑制物miRNA的一致上调以及下调有关癌基因miRNAs的调控-在本研究中,我们表征了miR-15a,miR-20a和microRNA簇17-92在糠fur猪笼草年轻和老年受试者的主要神经源性ches中的表达。通过使用原位杂交技术,同时对增殖细胞核抗原进行免疫染色,可以同时可视化神经元祖细胞。我们发现:(1)miR-15a在老年受试者的大脑中表达较高,并且主要集中在端脑和视神经顶盖的主要神经源性壁,;(2)miR-20a的表达在老年人的大脑中较高。 (3)最后,microRNA簇17–92在年轻受试者的大脑中的表达更高,主要集中在端脑和小脑的主要神经源领域,以及降低了视皮质的强度。综上所述,我们的数据表明,最初在全脑分析中鉴定出的这些microRNA在衰老过程中在干细胞生态位中受到特定调节。

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