Chmielarz Piotr, Konovalova Julia, Najam Syeda Sadia, Alter Heike, Piepponen Timo Petteri, Erfle Holger, Sonntag Kai C, Schütz Günther, Vinnikov Ilya A, Domanskyi Andrii
Institute of Biotechnology, University of Helsinki, Helsinki, Finland.
Institute of Pharmacology, Polish Academy of Sciences, Department of Brain Biochemistry, Krakow, Poland.
Cell Death Dis. 2017 May 25;8(5):e2813. doi: 10.1038/cddis.2017.214.
MicroRNAs (miRs) are important post-transcriptional regulators of gene expression implicated in neuronal development, differentiation, aging and neurodegenerative diseases, including Parkinson's disease (PD). Several miRs have been linked to PD-associated genes, apoptosis and stress response pathways, suggesting that deregulation of miRs may contribute to the development of the neurodegenerative phenotype. Here, we investigate the cell-autonomous role of miR processing RNAse Dicer in the functional maintenance of adult dopamine (DA) neurons. We demonstrate a reduction of Dicer in the ventral midbrain and altered miR expression profiles in laser-microdissected DA neurons of aged mice. Using a mouse line expressing tamoxifen-inducible CreERT2 recombinase under control of the DA transporter promoter, we show that a tissue-specific conditional ablation of Dicer in DA neurons of adult mice led to decreased levels of striatal DA and its metabolites without a reduction in neuronal body numbers in hemizygous mice (Dicer) and to progressive loss of DA neurons with severe locomotor deficits in nullizygous mice (Dicer). Moreover, we show that pharmacological stimulation of miR biosynthesis promoted survival of cultured DA neurons and reduced their vulnerability to thapsigargin-induced endoplasmic reticulum stress. Our data demonstrate that Dicer is crucial for maintenance of adult DA neurons, whereas a stimulation of miR production can promote neuronal survival, which may have direct implications for PD treatment.
微小RNA(miRs)是基因表达的重要转录后调节因子,参与神经元发育、分化、衰老以及包括帕金森病(PD)在内的神经退行性疾病。一些miRs与PD相关基因、细胞凋亡和应激反应途径有关,这表明miRs的失调可能导致神经退行性表型的发展。在此,我们研究了miR加工酶RNA酶Dicer在成年多巴胺(DA)能神经元功能维持中的细胞自主作用。我们发现老年小鼠腹侧中脑Dicer减少,激光显微切割的DA能神经元中miR表达谱改变。利用在DA转运体启动子控制下表达他莫昔芬诱导型CreERT2重组酶的小鼠品系,我们发现成年小鼠DA能神经元中Dicer的组织特异性条件性缺失导致杂合子小鼠(Dicer)纹状体DA及其代谢产物水平降低,但神经元数量未减少,而纯合子小鼠(Dicer)中DA能神经元逐渐丧失并伴有严重运动缺陷。此外,我们表明miR生物合成的药理刺激可促进培养的DA能神经元存活,并降低其对毒胡萝卜素诱导的内质网应激的易感性。我们的数据表明,Dicer对成年DA能神经元的维持至关重要,而刺激miR产生可促进神经元存活,这可能对PD治疗有直接影响。