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首页> 外文期刊>Molecular Neurobiology >A Regulatory Circuitry Between Gria2, miR-409, and miR-495 Is Affected by ALS FUS Mutation in ESC-Derived Motor Neurons
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A Regulatory Circuitry Between Gria2, miR-409, and miR-495 Is Affected by ALS FUS Mutation in ESC-Derived Motor Neurons

机译:GRIA2,MIR-409和MIR-495之间的调节电路受ESC衍生的运动神经元中的ALS FUS突变的影响

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Mutations in fused in sarcoma (FUS) cause amyotrophic lateral sclerosis (ALS). FUS is a multifunctional protein involved in the biogenesis and activity of several types of RNAs, and its role in the pathogenesis of ALS may involve both direct effects of disease-associated mutations through gain- and loss-of-function mechanisms and indirect effects due to the cross talk between different classes of FUS-dependent RNAs. To explore how FUS mutations impinge on motor neuron-specific RNA-based circuitries, we performed transcriptome profiling of small and long RNAs of motor neurons (MNs) derived from mouse embryonic stem cells carrying a FUS-P517L knock-in mutation, which is equivalent to human FUS-P525L, associated with a severe and juvenile-onset form of ALS. Combining ontological, predictive and molecular analyses, we found an inverse correlation between several classes of deregulated miRNAs and their corresponding mRNA targets in both homozygous and heterozygous P517L MNs. We validated a circuitry in which the upregulation of miR-409-3p and miR-495-3p, belonging to a brain-specific miRNA subcluster implicated in several neurodevelopmental disorders, produced the downregulation of Gria2, a subunit of the glutamate α‐amino‐3‐hydroxy‐5‐methyl-4-isoxazole propionic acid (AMPA)?receptor with a significant role in excitatory neurotransmission. Moreover, we found that FUS was involved in mediating such miRNA repression. Gria2 alteration has been proposed to be implicated in MN degeneration, through disturbance of Ca_(2+)homeostasis, which triggers a cascade of damaging “excitotoxic” events. The molecular cross talk identified highlights a role for FUS in excitotoxicity and in miRNA-dependent regulation of Gria2. This circuitry also proved to be deregulated in heterozygosity, which matches the human condition perfectly.
机译:在肉瘤(FUS)中融合的突变导致肌萎缩侧面硬化(ALS)。 fus是涉及几种类型RNA的生物发生和活性的多功能蛋白质,其在ALS的发病机制中的作用可能涉及通过增益和函数丧失的疾病相关突变的直接影响和由于不同类别的Fus依赖RNA之间的跨谈。为了探讨如何在运动神经元特异性RNA的电路上撞击的FUS突变,我们对衍生自携带FUS-P517L敲击突变的小鼠胚胎干细胞的运动神经元(MNS)的小和长RNA进行转录组分析,这是等同的对人的FUS-P525L,与ALS的严重和幼年发病形式相关联。结合本体学,预测和分子分析,我们发现纯合并和杂合P517L MNS中的几类放松管霉菌和它们对应的mRNA靶之间的反比相关性。我们验证了一种电路,其中miR-409-3p和miR-495-3p的上调,属于脑特异性miRNA亚克料含有含有的脑子特异性疾病,产生了Gria2的下调,谷氨酸α-氨基的亚基 - 3-羟基-5-甲基-4-异恶唑丙酸(AMPA)?受体在兴奋性神经递质中具有重要作用。此外,我们发现Fus参与介导此类miRNA抑制。已经提出了通过Ca_(2+)稳态的干扰,提出了GRIA2改变,这通过Ca_(2+)稳态,这触发了级联的破坏性“兴奋毒性”事件。鉴定的分子交叉谈判突出了FUS在兴奋毒性和MiRNA2的MiRNA2中的作用。该电路还证明在杂合子中定化,它们完全与人体状况相匹配。

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