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首页> 外文期刊>Human Molecular Genetics >Genetic ablation of Dicer in adult forebrain neurons results in abnormal tau hyperphosphorylation and neurodegeneration.
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Genetic ablation of Dicer in adult forebrain neurons results in abnormal tau hyperphosphorylation and neurodegeneration.

机译:成年前脑神经元Dicer的遗传消融导致异常的tau过度磷酸化和神经变性。

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摘要

Type III RNase Dicer is responsible for the maturation and function of microRNA (miRNA) molecules in the cell. It is now well-documented that Dicer and the fine-tuning of the miRNA gene network are important for neuronal integrity. However, the underlying mechanisms involved in neuronal death, particularly in the adult brain, remain poorly defined. Here we show that the absence of Dicer in the adult forebrain is accompanied by a mixed neurodegenerative phenotype. Although neuronal loss is observed in the hippocampus, cellular shrinkage is predominant in the cortex. Interestingly, neuronal degeneration coincides with the hyperphosphorylation of endogenous tau at several epitopes previously associated with neurofibrillary pathology. Transcriptome analysis of enzymes involved in tau phosphorylation identified ERK1 as one of the candidate kinases responsible for this event in vivo. We further demonstrate that miRNAs belonging to the miR-15 family are potent regulators of ERK1 expression in mouse neuronal cells and co-expressed with ERK1/2 in vivo. Finally, we show that miR-15a is specifically downregulated in Alzheimer's disease brain. In summary, these results support the hypothesis that changes in the miRNA network may contribute to a neurodegenerative phenotype by affecting tau phosphorylation.
机译:III型RNase Dicer负责细胞中microRNA(miRNA)分子的成熟和功能。现已有资料证明,切丁机和miRNA基因网络的微调对于神经元完整性至关重要。但是,涉及神经元死亡,尤其是在成年大脑中的潜在机制尚不清楚。在这里,我们显示成人前脑中Dicer的缺失伴随着混合的神经退行性表型。尽管在海马体中观察到神经元丢失,但是在皮质中细胞收缩是主要的。有趣的是,神经元变性与内源性tau在先前与神经原纤维病理学有关的几个表位的过度磷酸化相吻合。对tau磷酸化酶的转录组分析确定ERK1是体内负责此事件的候选激酶之一。我们进一步证明,属于miR-15家族的miRNA是小鼠神经元细胞中ERK1表达的有效调节剂,并且在体内与ERK1 / 2共表达。最后,我们表明miR-15a在阿尔茨海默氏病脑中特别下调。总之,这些结果支持以下假设:miRNA网络中的变化可能通过影响tau磷酸化而导致神经退行性表型。

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