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Dicer and microRNAs protect adult dopamine neurons.
Chmielarz, Piotr; Konovalova, Julia; Najam, Syeda Sadia; Alter, Heike; Piepponen, Timo Petteri; Erfle, Holger; Sonntag, Kai C; Schütz, Günther; Vinnikov, Ilya A; Domanskyi, Andrii.
Affiliation
  • Chmielarz P; Institute of Biotechnology, University of Helsinki, Helsinki, Finland.
  • Konovalova J; Institute of Pharmacology, Polish Academy of Sciences, Department of Brain Biochemistry, Krakow, Poland.
  • Najam SS; Institute of Biotechnology, University of Helsinki, Helsinki, Finland.
  • Alter H; Laboratory of Molecular Neurobiology, Sheng Yushou Center of Cell Biology and Immunology, Department of Genetics and Developmental Biology, School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai, China.
  • Piepponen TP; Molecular Biology of the Cell I Division, German Cancer Research Center, Heidelberg, Germany.
  • Erfle H; Division of Pharmacology and Pharmacotherapy, University of Helsinki, Helsinki, Finland.
  • Sonntag KC; ViroQuant-CellNetworks RNAi Screening Facility, BioQuant, Heidelberg University, Heidelberg, Germany.
  • Schütz G; Department of Psychiatry, McLean Hospital, Harvard Medical School, 115 Mill Street, Belmont, MA, USA.
  • Vinnikov IA; Molecular Biology of the Cell I Division, German Cancer Research Center, Heidelberg, Germany.
  • Domanskyi A; Laboratory of Molecular Neurobiology, Sheng Yushou Center of Cell Biology and Immunology, Department of Genetics and Developmental Biology, School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai, China.
Cell Death Dis ; 8(5): e2813, 2017 05 25.
Article in En | MEDLINE | ID: mdl-28542144
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 (DicerHET) and to progressive loss of DA neurons with severe locomotor deficits in nullizygous mice (DicerCKO). 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.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Aging / MicroRNAs / Ribonuclease III / Dopaminergic Neurons / Neuroprotection Limits: Animals Language: En Journal: Cell Death Dis Year: 2017 Document type: Article Affiliation country: Finland Country of publication: United kingdom

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Aging / MicroRNAs / Ribonuclease III / Dopaminergic Neurons / Neuroprotection Limits: Animals Language: En Journal: Cell Death Dis Year: 2017 Document type: Article Affiliation country: Finland Country of publication: United kingdom