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Current Drug TargetsVolume 14, Issue 10, 2013, Pages 1135-1143

Targeting miR-21 induces autophagy and chemosensitivity of leukemia cells(Article)

  • aCancer Drug Resistance Group, IPATIMUP - Institute of Molecular Pathology and Immunology of the University of Porto, Porto, Portugal
  • bLaboratory of Microbiology, Department of Biological Sciences, University of Porto, Porto, Portugal
  • cCEQUIMED-UP, Centre of Medicinal Chemistry - University of Porto, Porto, Portugal
  • dAbel Salazar Institute for Biomedical Sciences (ICBAS), University of Porto, Porto, Portugal
  • eClinical Hematology, Hospital São João, Porto, Portugal
  • fClinical Hematology, University of Porto, Porto, Portugal

Abstract

Overexpression of oncomiR-21 has been observed in most cancer types, such as leukemia. This miR has been implicated in a number of cellular processes, including chemoresistance, possibly by directly modulating the expression of several apoptotic related proteins. It was recently shown to directly target Bcl-2 mRNA and upregulate Bcl-2 protein expression. Nevertheless, the possible effect of miR-21 in autophagy has never been addressed. This study investigates the effects of targeting miR-21 with antimiRs on chronic myeloid leukemia cellular autophagy and on associated drug sensitivity. We observed that miR-21 downregulation decreased cellular viability and proliferation, although no changes to the normal cell cycle profile were observed. miR-21 downregulation also caused increased programmed cell death and a decrease in the expression levels of Bcl-2 protein, although PARP cleavage was not affected, indicating that apoptosis was not the relevant mechanism underlying the observed results. Treatment with antimiR-21 caused an increase in the autophagy related proteins Beclin-1, Vps34 and LC3-II. Accordingly, autophagic vacuoles were visualized both by monodansylcadaverine (MDC) and acridine orange (AO) staining and also by transmission electron microscopy (TEM). Additionally, miR-21 downregulation increased K562 and KYO-1 cellular sensitivity to etoposide or doxorubicin. This chemosensitivity was reverted by pre-treating cells with 3-MA, an autophagy inhibitor. Finally, serum starvation (an autophagy inducer) also increased sensitivity to these drugs, confirming that autophagy sensitized these cells to the effect of these drugs. To the best of our knowledge, this is the first description of autophagy induction via miR-21 targeting and its involvement in drug sensitivity. © 2013 Bentham Science Publishers.

Author keywords

AntimiRsAutophagyCancerChemoresistancemiR-21

Indexed keywords

EMTREE drug terms:3 methyladeninebeclin 1caspase 3doxorubicinetoposidemicroRNA 21nicotinamide adenine dinucleotide adenosine diphosphate ribosyltransferasephosphatidylinositol 3 kinaseprotein bcl 2
EMTREE medical terms:apoptosisarticleautophagycell deathcell proliferationcell viabilitychemosensitivitychronic myeloid leukemiacontrolled studycytotoxicitydown regulationdrug sensitivityflow cytometrygenetic transfectionhumanhuman cellimmunoprecipitationprotein expressionreal time polymerase chain reactiontransmission electron microscopyWestern blotting
MeSH:Antineoplastic AgentsApoptosisApoptosis Regulatory ProteinsAutophagyCell CycleCell Line, TumorCell ProliferationCell SurvivalDoxorubicinEtoposideGene Expression Regulation, NeoplasticGenes, bcl-2HumansK562 CellsLeukemia, Myelogenous, Chronic, BCR-ABL PositiveMicroRNAs

Chemicals and CAS Registry Numbers:

3 methyladenine, 5142-23-4; caspase 3, 169592-56-7; doxorubicin, 23214-92-8, 25316-40-9; etoposide, 33419-42-0; nicotinamide adenine dinucleotide adenosine diphosphate ribosyltransferase, 58319-92-9; phosphatidylinositol 3 kinase, 115926-52-8; protein bcl 2, 219306-68-0;

Antineoplastic Agents; Apoptosis Regulatory Proteins; Doxorubicin, 80168379AG; Etoposide, 6PLQ3CP4P3; MIRN21 microRNA, human; MicroRNAs

  • ISSN: 13894501
  • CODEN: CDTUA
  • Source Type: Journal
  • Original language: English
  • DOI: 10.2174/13894501113149990185
  • PubMed ID: 23834154
  • Document Type: Article

  Seca, H.; Rua Dr. Roberto Frias s/n, Portugal;
© Copyright 2014 Elsevier B.V., All rights reserved. © MEDLINE® is the source for the MeSH terms of this document.

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