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MicroRNAs and the Regulation of Tau Metabolism

机译:MicroRNA和Tau代谢的调节。

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Abnormal regulation of tau phosphorylation and/or alternative splicing is associated with the development of a large (20) group of neurodegenerative disorders collectively known as tauopathies, the most common being Alzheimer's disease. Despite intensive research, little is known about the molecular mechanisms that participate in the transcriptional and posttranscriptional regulation of endogenous tau, especially in neurons. Recently, we showed that mice lacking Dicer in the forebrain displayed progressive neurodegeneration accompanied by disease-like changes in tau phosphorylation and splicing. Dicer is a key enzyme in the biogenesis of microRNAs (miRNAs), small noncoding RNAs that function as part of the RNA-induced silencing complex (RISC) to repress gene expression at the posttranscriptional level. We identified miR-16 and miR-132 as putative endogenous modulators of neuronal tau phosphorylation and tau exon 10 splicing, respectively. Interestingly, these miRNAs have been implicated in cell survival and function, whereas changes in miR-16/132 levels correlate with tau pathology in human neurodegenerative disorders. Thus, understanding how miRNA networks influence tau metabolism and possibly other biological systems might provide important clues into the molecular causes of tauopathies, particularly the more common but less understood sporadic forms.
机译:tau磷酸化和/或选择性剪接的异常调节与大量(> 20)神经退行性疾病的发展有关,这些疾病通常被称为tauopathies,最常见的是阿尔茨海默氏病。尽管进行了深入的研究,但对参与内源性tau尤其是神经元的转录和转录后调控的分子机制知之甚少。最近,我们显示,在前脑中缺乏Dicer的小鼠表现出进行性神经变性,并伴有tau磷酸化和剪接等疾病样变化。 Dicer是microRNA(miRNA)(微小的非编码RNA)生物合成中的关键酶,其作为RNA诱导的沉默复合体(RISC)的一部分,在转录后水平上抑制基因表达。我们将miR-16和miR-132分别确定为神经元tau磷酸化和tau外显子10剪接的推定内源性调节剂。有趣的是,这些miRNA与细胞存活和功能有关,而miR-16 / 132水平的变化与人类神经退行性疾病的tau病理相关。因此,了解miRNA网络如何影响tau代谢以及可能的其他生物系统可能会为tauopathies的分子原因提供重要线索,尤其是更常见但鲜为人知的零星形式。

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