Inhibition of miR-21 Promotes Cellular Senescence in NT2-Derived Astrocytes.


Journal

Biochemistry. Biokhimiia
ISSN: 1608-3040
Titre abrégé: Biochemistry (Mosc)
Pays: United States
ID NLM: 0376536

Informations de publication

Date de publication:
Nov 2021
Historique:
entrez: 15 12 2021
pubmed: 16 12 2021
medline: 22 1 2022
Statut: ppublish

Résumé

Astrocytes are the main homeostatic cells in the central nervous system (CNS) that provide mechanical, metabolic, and trophic support to neurons. Disruption of their physiological role or acquisition of senescence-associated phenotype can contribute to the CNS dysfunction and pathology. However, molecular mechanisms underlying the complex physiology of astrocytes are explored insufficiently. Recent studies have shown that miRNAs are involved in the regulation of astrocyte function through different mechanisms. Although miR-21 has been reported as an astrocytic miRNA with an important role in astrogliosis, no link between this miRNA and cellular senescence of astrocytes has been identified. To address the role of miR-21 in astrocytes, with special focus on cellular senescence, we used NT2/A (astrocytes derived from NT2/D1 cells). Downregulation of miR-21 expression in both immature and mature NT2/A by the antisense technology induced the arrest of cell growth and premature cellular senescence, as indicated by senescence hallmarks such as increased expression of cell cycle inhibitors p21 and p53 and augmented senescence-associated β-galactosidase activity. Additionally, in silico analysis predicted many of the genes, previously shown to be upregulated in astrocytes with the irradiation-induced senescence, as miR-21 targets. Taken together, our results point to miR-21 as a potential regulator of astrocyte senescence. To the best of our knowledge, these are the first data showing the link between miR-21 and cellular senescence of astrocytes. Since senescent astrocytes are associated with different CNS pathologies, development of novel therapeutic strategies based on miRNA manipulation could prevent senescence and may improve the physiological outcome.

Identifiants

pubmed: 34906045
pii: BCM86111687
doi: 10.1134/S0006297921110079
doi:

Substances chimiques

MIRN21 microRNA, human 0
MicroRNAs 0
Oligonucleotides, Antisense 0

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

1434-1445

Auteurs

Vanda Balint (V)

Laboratory for Human Molecular Genetics, Institute of Molecular Genetics and Genetic Engineering, University of Belgrade, Belgrade, 11042, Serbia.

Danijela Stanisavljevic Ninkovic (DS)

Laboratory for Human Molecular Genetics, Institute of Molecular Genetics and Genetic Engineering, University of Belgrade, Belgrade, 11042, Serbia.

Natasa Anastasov (N)

Helmholtz Zentrum München, German Research Center for Environmental Health, Institute of Biological and Medical Imaging, Neuherberg, 85764, Germany.

Stefan Lazic (S)

Laboratory for Human Molecular Genetics, Institute of Molecular Genetics and Genetic Engineering, University of Belgrade, Belgrade, 11042, Serbia.

Natasa Kovacevic-Grujicic (N)

Laboratory for Human Molecular Genetics, Institute of Molecular Genetics and Genetic Engineering, University of Belgrade, Belgrade, 11042, Serbia.

Milena Stevanovic (M)

Laboratory for Human Molecular Genetics, Institute of Molecular Genetics and Genetic Engineering, University of Belgrade, Belgrade, 11042, Serbia.
Faculty of Biology, University of Belgrade, Belgrade, 11158, Serbia.
Serbian Academy of Sciences and Arts, Belgrade, 11000, Serbia.

Andrijana Lazic (A)

Laboratory for Human Molecular Genetics, Institute of Molecular Genetics and Genetic Engineering, University of Belgrade, Belgrade, 11042, Serbia. andrijanak@imgge.bg.ac.rs.

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Classifications MeSH