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在α-突触核蛋白病神经元细胞模型中的全miRNome分析表明细胞周期基因参与其中。

Comprehensive miRNome-Wide Profiling in a Neuronal Cell Model of Synucleinopathy Implies Involvement of Cell Cycle Genes.

作者信息

Findeiss Elisabeth, Schwarz Sigrid C, Evsyukov Valentin, Rösler Thomas W, Höllerhage Matthias, Chakroun Tasnim, Nykänen Niko-Petteri, Shen Yimin, Wurst Wolfgang, Kohl Michael, Tost Jörg, Höglinger Günter U

机构信息

Department of Translational Neurodegeneration, German Center for Neurodegenerative Diseases, Munich, Germany.

Department of Neurology, School of Medicine, Technical University of Munich, Munich, Germany.

出版信息

Front Cell Dev Biol. 2021 Mar 4;9:561086. doi: 10.3389/fcell.2021.561086. eCollection 2021.

Abstract

Growing evidence suggests that epigenetic mechanisms like microRNA-mediated transcriptional regulation contribute to the pathogenesis of parkinsonism. In order to study the influence of microRNAs (miRNAs), we analyzed the miRNome 2 days prior to major cell death in α-synuclein-overexpressing Lund human mesencephalic neurons, a well-established cell model of Parkinson's disease (PD), by next-generation sequencing. The expression levels of 23 miRNAs were significantly altered in α-synuclein-overexpressing cells, 11 were down- and 12 upregulated ( < 0.01; non-adjusted). The analysis of known target genes of these miRNAs was complemented by the inclusion of a transcriptome dataset (BeadChip) of the same cellular system, revealing the G0/G1 cell cycle transition to be markedly enriched. Out of 124 KEGG-annotated cell cycle genes, 15 were present in the miRNA target gene dataset and six G0/G1 cell cycle genes were found to be significantly altered upon α-synuclein overexpression, with five genes up- (, , and at < 0.01; , at < 0.05) and one gene downregulated ( at < 0.001). Additionally, several of these altered genes are targeted by miRNAs hsa-miR-34a-5p and hsa-miR-34c-5p, which also modulate α-synuclein expression levels. Functional intervention by siRNA-mediated knockdown of the cell cycle gene cyclin D1 () confirmed that silencing of cell cycle initiation is able to substantially reduce α-synuclein-mediated cytotoxicity. The present findings suggest that α-synuclein accumulation induces microRNA-mediated aberrant cell cycle activation in post-mitotic dopaminergic neurons. Thus, the mitotic cell cycle pathway at the level of miRNAs might offer interesting novel therapeutic targets for PD.

摘要

越来越多的证据表明,诸如 microRNA 介导的转录调控等表观遗传机制参与了帕金森症的发病过程。为了研究 microRNA(miRNA)的影响,我们通过新一代测序技术,分析了过表达 α-突触核蛋白的 Lund 人脑中脑神经元(一种成熟的帕金森病(PD)细胞模型)在主要细胞死亡前两天的 miRNA 组。在过表达 α-突触核蛋白的细胞中,23 种 miRNA 的表达水平发生了显著变化,其中 11 种下调,12 种上调(<0.01;未校正)。通过纳入同一细胞系统的转录组数据集(BeadChip),对这些 miRNA 的已知靶基因进行分析,结果显示 G0/G1 细胞周期转换显著富集。在 124 个经 KEGG 注释的细胞周期基因中,有 15 个存在于 miRNA 靶基因数据集中,并且发现 6 个 G0/G1 细胞周期基因在 α-突触核蛋白过表达时发生了显著变化,其中 5 个基因上调(,,在<0.01 时;,在<0.05 时),1 个基因下调(在<0.001 时)。此外,这些变化的基因中有几个是 miRNA hsa-miR-34a-5p 和 hsa-miR-34c-5p 的靶标,它们也调节 α-突触核蛋白的表达水平。通过 siRNA 介导的细胞周期基因细胞周期蛋白 D1()敲低进行功能干预,证实细胞周期起始的沉默能够显著降低 α-突触核蛋白介导的细胞毒性。目前的研究结果表明,α-突触核蛋白的积累会诱导有丝分裂后多巴胺能神经元中 microRNA 介导的异常细胞周期激活。因此,miRNA 水平的有丝分裂细胞周期途径可能为 PD 提供有趣的新型治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad38/7969723/d23d85a1ee3e/fcell-09-561086-g001.jpg

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