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Brain pyrimidine nucleotide synthesis and Alzheimer disease

机译:脑嘧啶核苷酸的合成与阿尔茨海默病

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摘要

Many patients suffering late-onset Alzheimer disease show a deficit in respiratory complex IV activity. The de novo pyrimidine biosynthesis pathway connects with the mitochondrial respiratory chain upstream from respiratory complex IV. We hypothesized that these patients would have decreased pyrimidine nucleotide levels. Then, different cell processes for which these compounds are essential, such as neuronal membrane generation and maintenance and synapses production, would be compromised. Using a cell model, we show that inhibiting oxidative phosphorylation function reduces neuronal differentiation. Linking these processes to pyrimidine nucleotides, uridine treatment recovers neuronal differentiation. To unmask the importance of these pathways in Alzheimer disease, we firstly confirm the existence of the de novo pyrimidine biosynthesis pathway in adult human brain. Then, we report altered mRNA levels for genes from both de novo pyrimidine biosynthesis and pyrimidine salvage pathways in brain from patients with Alzheimer disease. Thus, uridine supplementation might be used as a therapy for those Alzheimer disease patients with low respiratory complex IV activity.
机译:许多患有晚期阿尔茨海默氏病的患者表现出呼吸复合物IV活性不足。从头嘧啶生物合成途径与呼吸复合物IV上游的线粒体呼吸链相连。我们假设这些患者的嘧啶核苷酸水平会降低。然后,这些化合物必不可少的不同细胞过程,例如神经元膜的产生和维持以及突触的产生将受到损害。使用细胞模型,我们表明抑制氧化磷酸化功能减少神经元分化。将这些过程与嘧啶核苷酸连接起来,尿苷处理可恢复神经元分化。为了揭示这些途径在阿尔茨海默病中的重要性,我们首先确认了成年人脑中从头嘧啶生物合成途径的存在。然后,我们报告了阿尔茨海默病患者脑中从头进行嘧啶生物合成和嘧啶挽救途径的基因mRNA水平的变化。因此,尿苷补充剂可以用作那些呼吸道复合物IV活性低的阿尔茨海默病患者的疗法。

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