Cargando…

Cell Survival Following Radiation Exposure Requires miR-525-3p Mediated Suppression of ARRB1 and TXN1

BACKGROUND: microRNAs (miRNAs) are non-coding RNAs that alter the stability and translation efficiency of messenger RNAs. Ionizing radiation (IR) induces rapid and selective changes in miRNA expression. Depletion of the miRNA processing enzymes Dicer or Ago2 reduces the capacity of cells to survive...

Descripción completa

Detalles Bibliográficos
Autores principales: Kraemer, Anne, Barjaktarovic, Zarko, Sarioglu, Hakan, Winkler, Klaudia, Eckardt-Schupp, Friederike, Tapio, Soile, Atkinson, Michael J., Moertl, Simone
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3797807/
https://www.ncbi.nlm.nih.gov/pubmed/24147004
http://dx.doi.org/10.1371/journal.pone.0077484
_version_ 1782287673285672960
author Kraemer, Anne
Barjaktarovic, Zarko
Sarioglu, Hakan
Winkler, Klaudia
Eckardt-Schupp, Friederike
Tapio, Soile
Atkinson, Michael J.
Moertl, Simone
author_facet Kraemer, Anne
Barjaktarovic, Zarko
Sarioglu, Hakan
Winkler, Klaudia
Eckardt-Schupp, Friederike
Tapio, Soile
Atkinson, Michael J.
Moertl, Simone
author_sort Kraemer, Anne
collection PubMed
description BACKGROUND: microRNAs (miRNAs) are non-coding RNAs that alter the stability and translation efficiency of messenger RNAs. Ionizing radiation (IR) induces rapid and selective changes in miRNA expression. Depletion of the miRNA processing enzymes Dicer or Ago2 reduces the capacity of cells to survive radiation exposure. Elucidation of critical radiation-regulated miRNAs and their target proteins offers a promising approach to identify new targets to increase the therapeutic effectiveness of the radiation treatment of cancer. PRINCIPAL FINDINGS: Expression of miR-525-3p is rapidly up-regulated in response to radiation. Manipulation of miR-525-3p expression in irradiated cells confirmed that this miRNA mediates the radiosensitivity of a variety of non-transformed (RPE, HUVEC) and tumor-derived cell lines (HeLa, U2-Os, EA.hy926) cell lines. Thus, anti-miR-525-3p mediated inhibition of the increase in miR-525-3p elevated radiosensitivity, while overexpression of precursor miR-525-3p conferred radioresistance. Using a proteomic approach we identified 21 radiation-regulated proteins, of which 14 were found to be candidate targets for miR-525-3p-mediated repression. Luciferase reporter assays confirmed that nine of these were indeed direct targets of miR-525-3p repression. Individual analysis of these direct targets by RNAi-mediated knockdown established that ARRB1, TXN1 and HSPA9 are essential miR-525-3p-dependent regulators of radiation sensitivity. CONCLUSION: The transient up-regulation of miR-525-3p, and the resultant repression of its direct targets ARRB1, TXN1 and HSPA9, is required for cell survival following irradiation. The conserved function of miR-525-3p across several cell types makes this microRNA pathway a promising target for modifying the efficacy of radiotherapy.
format Online
Article
Text
id pubmed-3797807
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-37978072013-10-21 Cell Survival Following Radiation Exposure Requires miR-525-3p Mediated Suppression of ARRB1 and TXN1 Kraemer, Anne Barjaktarovic, Zarko Sarioglu, Hakan Winkler, Klaudia Eckardt-Schupp, Friederike Tapio, Soile Atkinson, Michael J. Moertl, Simone PLoS One Research Article BACKGROUND: microRNAs (miRNAs) are non-coding RNAs that alter the stability and translation efficiency of messenger RNAs. Ionizing radiation (IR) induces rapid and selective changes in miRNA expression. Depletion of the miRNA processing enzymes Dicer or Ago2 reduces the capacity of cells to survive radiation exposure. Elucidation of critical radiation-regulated miRNAs and their target proteins offers a promising approach to identify new targets to increase the therapeutic effectiveness of the radiation treatment of cancer. PRINCIPAL FINDINGS: Expression of miR-525-3p is rapidly up-regulated in response to radiation. Manipulation of miR-525-3p expression in irradiated cells confirmed that this miRNA mediates the radiosensitivity of a variety of non-transformed (RPE, HUVEC) and tumor-derived cell lines (HeLa, U2-Os, EA.hy926) cell lines. Thus, anti-miR-525-3p mediated inhibition of the increase in miR-525-3p elevated radiosensitivity, while overexpression of precursor miR-525-3p conferred radioresistance. Using a proteomic approach we identified 21 radiation-regulated proteins, of which 14 were found to be candidate targets for miR-525-3p-mediated repression. Luciferase reporter assays confirmed that nine of these were indeed direct targets of miR-525-3p repression. Individual analysis of these direct targets by RNAi-mediated knockdown established that ARRB1, TXN1 and HSPA9 are essential miR-525-3p-dependent regulators of radiation sensitivity. CONCLUSION: The transient up-regulation of miR-525-3p, and the resultant repression of its direct targets ARRB1, TXN1 and HSPA9, is required for cell survival following irradiation. The conserved function of miR-525-3p across several cell types makes this microRNA pathway a promising target for modifying the efficacy of radiotherapy. Public Library of Science 2013-10-16 /pmc/articles/PMC3797807/ /pubmed/24147004 http://dx.doi.org/10.1371/journal.pone.0077484 Text en © 2013 Kraemer et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Kraemer, Anne
Barjaktarovic, Zarko
Sarioglu, Hakan
Winkler, Klaudia
Eckardt-Schupp, Friederike
Tapio, Soile
Atkinson, Michael J.
Moertl, Simone
Cell Survival Following Radiation Exposure Requires miR-525-3p Mediated Suppression of ARRB1 and TXN1
title Cell Survival Following Radiation Exposure Requires miR-525-3p Mediated Suppression of ARRB1 and TXN1
title_full Cell Survival Following Radiation Exposure Requires miR-525-3p Mediated Suppression of ARRB1 and TXN1
title_fullStr Cell Survival Following Radiation Exposure Requires miR-525-3p Mediated Suppression of ARRB1 and TXN1
title_full_unstemmed Cell Survival Following Radiation Exposure Requires miR-525-3p Mediated Suppression of ARRB1 and TXN1
title_short Cell Survival Following Radiation Exposure Requires miR-525-3p Mediated Suppression of ARRB1 and TXN1
title_sort cell survival following radiation exposure requires mir-525-3p mediated suppression of arrb1 and txn1
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3797807/
https://www.ncbi.nlm.nih.gov/pubmed/24147004
http://dx.doi.org/10.1371/journal.pone.0077484
work_keys_str_mv AT kraemeranne cellsurvivalfollowingradiationexposurerequiresmir5253pmediatedsuppressionofarrb1andtxn1
AT barjaktaroviczarko cellsurvivalfollowingradiationexposurerequiresmir5253pmediatedsuppressionofarrb1andtxn1
AT sariogluhakan cellsurvivalfollowingradiationexposurerequiresmir5253pmediatedsuppressionofarrb1andtxn1
AT winklerklaudia cellsurvivalfollowingradiationexposurerequiresmir5253pmediatedsuppressionofarrb1andtxn1
AT eckardtschuppfriederike cellsurvivalfollowingradiationexposurerequiresmir5253pmediatedsuppressionofarrb1andtxn1
AT tapiosoile cellsurvivalfollowingradiationexposurerequiresmir5253pmediatedsuppressionofarrb1andtxn1
AT atkinsonmichaelj cellsurvivalfollowingradiationexposurerequiresmir5253pmediatedsuppressionofarrb1andtxn1
AT moertlsimone cellsurvivalfollowingradiationexposurerequiresmir5253pmediatedsuppressionofarrb1andtxn1