Cargando…

A prototypical non-malignant epithelial model to study genome dynamics and concurrently monitor micro-RNAs and proteins in situ during oncogene-induced senescence

BACKGROUND: Senescence is a fundamental biological process implicated in various pathologies, including cancer. Regarding carcinogenesis, senescence signifies, at least in its initial phases, an anti-tumor response that needs to be circumvented for cancer to progress. Micro-RNAs, a subclass of regul...

Descripción completa

Detalles Bibliográficos
Autores principales: Komseli, Eirini-Stavroula, Pateras, Ioannis S., Krejsgaard, Thorbjørn, Stawiski, Konrad, Rizou, Sophia V., Polyzos, Alexander, Roumelioti, Fani-Marlen, Chiourea, Maria, Mourkioti, Ioanna, Paparouna, Eleni, Zampetidis, Christos P., Gumeni, Sentiljana, Trougakos, Ioannis P., Pefani, Dafni-Eleftheria, O’Neill, Eric, Gagos, Sarantis, Eliopoulos, Aristides G., Fendler, Wojciech, Chowdhury, Dipanjan, Bartek, Jiri, Gorgoulis, Vassilis G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5763532/
https://www.ncbi.nlm.nih.gov/pubmed/29321003
http://dx.doi.org/10.1186/s12864-017-4375-1
_version_ 1783291902270898176
author Komseli, Eirini-Stavroula
Pateras, Ioannis S.
Krejsgaard, Thorbjørn
Stawiski, Konrad
Rizou, Sophia V.
Polyzos, Alexander
Roumelioti, Fani-Marlen
Chiourea, Maria
Mourkioti, Ioanna
Paparouna, Eleni
Zampetidis, Christos P.
Gumeni, Sentiljana
Trougakos, Ioannis P.
Pefani, Dafni-Eleftheria
O’Neill, Eric
Gagos, Sarantis
Eliopoulos, Aristides G.
Fendler, Wojciech
Chowdhury, Dipanjan
Bartek, Jiri
Gorgoulis, Vassilis G.
author_facet Komseli, Eirini-Stavroula
Pateras, Ioannis S.
Krejsgaard, Thorbjørn
Stawiski, Konrad
Rizou, Sophia V.
Polyzos, Alexander
Roumelioti, Fani-Marlen
Chiourea, Maria
Mourkioti, Ioanna
Paparouna, Eleni
Zampetidis, Christos P.
Gumeni, Sentiljana
Trougakos, Ioannis P.
Pefani, Dafni-Eleftheria
O’Neill, Eric
Gagos, Sarantis
Eliopoulos, Aristides G.
Fendler, Wojciech
Chowdhury, Dipanjan
Bartek, Jiri
Gorgoulis, Vassilis G.
author_sort Komseli, Eirini-Stavroula
collection PubMed
description BACKGROUND: Senescence is a fundamental biological process implicated in various pathologies, including cancer. Regarding carcinogenesis, senescence signifies, at least in its initial phases, an anti-tumor response that needs to be circumvented for cancer to progress. Micro-RNAs, a subclass of regulatory, non-coding RNAs, participate in senescence regulation. At the subcellular level micro-RNAs, similar to proteins, have been shown to traffic between organelles influencing cellular behavior. The differential function of micro-RNAs relative to their subcellular localization and their role in senescence biology raises concurrent in situ analysis of coding and non-coding gene products in senescent cells as a necessity. However, technical challenges have rendered in situ co-detection unfeasible until now. METHODS: In the present report we describe a methodology that bypasses these technical limitations achieving for the first time simultaneous detection of both a micro-RNA and a protein in the biological context of cellular senescence, utilizing the new commercially available SenTraGor(TM) compound. The method was applied in a prototypical human non-malignant epithelial model of oncogene-induced senescence that we generated for the purposes of the study. For the characterization of this novel system, we applied a wide range of cellular and molecular techniques, as well as high-throughput analysis of the transcriptome and micro-RNAs. RESULTS: This experimental setting has three advantages that are presented and discussed: i) it covers a “gap” in the molecular carcinogenesis field, as almost all corresponding in vitro models are fibroblast-based, even though the majority of neoplasms have epithelial origin, ii) it recapitulates the precancerous and cancerous phases of epithelial tumorigenesis within a short time frame under the light of natural selection and iii) it uses as an oncogenic signal, the replication licensing factor CDC6, implicated in both DNA replication and transcription when over-expressed, a characteristic that can be exploited to monitor RNA dynamics. CONCLUSIONS: Consequently, we demonstrate that our model is optimal for studying the molecular basis of epithelial carcinogenesis shedding light on the tumor-initiating events. The latter may reveal novel molecular targets with clinical benefit. Besides, since this method can be incorporated in a wide range of low, medium or high-throughput image-based approaches, we expect it to be broadly applicable. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s12864-017-4375-1) contains supplementary material, which is available to authorized users.
format Online
Article
Text
id pubmed-5763532
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-57635322018-01-17 A prototypical non-malignant epithelial model to study genome dynamics and concurrently monitor micro-RNAs and proteins in situ during oncogene-induced senescence Komseli, Eirini-Stavroula Pateras, Ioannis S. Krejsgaard, Thorbjørn Stawiski, Konrad Rizou, Sophia V. Polyzos, Alexander Roumelioti, Fani-Marlen Chiourea, Maria Mourkioti, Ioanna Paparouna, Eleni Zampetidis, Christos P. Gumeni, Sentiljana Trougakos, Ioannis P. Pefani, Dafni-Eleftheria O’Neill, Eric Gagos, Sarantis Eliopoulos, Aristides G. Fendler, Wojciech Chowdhury, Dipanjan Bartek, Jiri Gorgoulis, Vassilis G. BMC Genomics Methodology Article BACKGROUND: Senescence is a fundamental biological process implicated in various pathologies, including cancer. Regarding carcinogenesis, senescence signifies, at least in its initial phases, an anti-tumor response that needs to be circumvented for cancer to progress. Micro-RNAs, a subclass of regulatory, non-coding RNAs, participate in senescence regulation. At the subcellular level micro-RNAs, similar to proteins, have been shown to traffic between organelles influencing cellular behavior. The differential function of micro-RNAs relative to their subcellular localization and their role in senescence biology raises concurrent in situ analysis of coding and non-coding gene products in senescent cells as a necessity. However, technical challenges have rendered in situ co-detection unfeasible until now. METHODS: In the present report we describe a methodology that bypasses these technical limitations achieving for the first time simultaneous detection of both a micro-RNA and a protein in the biological context of cellular senescence, utilizing the new commercially available SenTraGor(TM) compound. The method was applied in a prototypical human non-malignant epithelial model of oncogene-induced senescence that we generated for the purposes of the study. For the characterization of this novel system, we applied a wide range of cellular and molecular techniques, as well as high-throughput analysis of the transcriptome and micro-RNAs. RESULTS: This experimental setting has three advantages that are presented and discussed: i) it covers a “gap” in the molecular carcinogenesis field, as almost all corresponding in vitro models are fibroblast-based, even though the majority of neoplasms have epithelial origin, ii) it recapitulates the precancerous and cancerous phases of epithelial tumorigenesis within a short time frame under the light of natural selection and iii) it uses as an oncogenic signal, the replication licensing factor CDC6, implicated in both DNA replication and transcription when over-expressed, a characteristic that can be exploited to monitor RNA dynamics. CONCLUSIONS: Consequently, we demonstrate that our model is optimal for studying the molecular basis of epithelial carcinogenesis shedding light on the tumor-initiating events. The latter may reveal novel molecular targets with clinical benefit. Besides, since this method can be incorporated in a wide range of low, medium or high-throughput image-based approaches, we expect it to be broadly applicable. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s12864-017-4375-1) contains supplementary material, which is available to authorized users. BioMed Central 2018-01-10 /pmc/articles/PMC5763532/ /pubmed/29321003 http://dx.doi.org/10.1186/s12864-017-4375-1 Text en © The Author(s). 2018 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Methodology Article
Komseli, Eirini-Stavroula
Pateras, Ioannis S.
Krejsgaard, Thorbjørn
Stawiski, Konrad
Rizou, Sophia V.
Polyzos, Alexander
Roumelioti, Fani-Marlen
Chiourea, Maria
Mourkioti, Ioanna
Paparouna, Eleni
Zampetidis, Christos P.
Gumeni, Sentiljana
Trougakos, Ioannis P.
Pefani, Dafni-Eleftheria
O’Neill, Eric
Gagos, Sarantis
Eliopoulos, Aristides G.
Fendler, Wojciech
Chowdhury, Dipanjan
Bartek, Jiri
Gorgoulis, Vassilis G.
A prototypical non-malignant epithelial model to study genome dynamics and concurrently monitor micro-RNAs and proteins in situ during oncogene-induced senescence
title A prototypical non-malignant epithelial model to study genome dynamics and concurrently monitor micro-RNAs and proteins in situ during oncogene-induced senescence
title_full A prototypical non-malignant epithelial model to study genome dynamics and concurrently monitor micro-RNAs and proteins in situ during oncogene-induced senescence
title_fullStr A prototypical non-malignant epithelial model to study genome dynamics and concurrently monitor micro-RNAs and proteins in situ during oncogene-induced senescence
title_full_unstemmed A prototypical non-malignant epithelial model to study genome dynamics and concurrently monitor micro-RNAs and proteins in situ during oncogene-induced senescence
title_short A prototypical non-malignant epithelial model to study genome dynamics and concurrently monitor micro-RNAs and proteins in situ during oncogene-induced senescence
title_sort prototypical non-malignant epithelial model to study genome dynamics and concurrently monitor micro-rnas and proteins in situ during oncogene-induced senescence
topic Methodology Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5763532/
https://www.ncbi.nlm.nih.gov/pubmed/29321003
http://dx.doi.org/10.1186/s12864-017-4375-1
work_keys_str_mv AT komselieirinistavroula aprototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT paterasioanniss aprototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT krejsgaardthorbjørn aprototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT stawiskikonrad aprototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT rizousophiav aprototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT polyzosalexander aprototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT roumeliotifanimarlen aprototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT chioureamaria aprototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT mourkiotiioanna aprototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT paparounaeleni aprototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT zampetidischristosp aprototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT gumenisentiljana aprototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT trougakosioannisp aprototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT pefanidafnieleftheria aprototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT oneilleric aprototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT gagossarantis aprototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT eliopoulosaristidesg aprototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT fendlerwojciech aprototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT chowdhurydipanjan aprototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT bartekjiri aprototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT gorgoulisvassilisg aprototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT komselieirinistavroula prototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT paterasioanniss prototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT krejsgaardthorbjørn prototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT stawiskikonrad prototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT rizousophiav prototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT polyzosalexander prototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT roumeliotifanimarlen prototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT chioureamaria prototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT mourkiotiioanna prototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT paparounaeleni prototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT zampetidischristosp prototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT gumenisentiljana prototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT trougakosioannisp prototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT pefanidafnieleftheria prototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT oneilleric prototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT gagossarantis prototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT eliopoulosaristidesg prototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT fendlerwojciech prototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT chowdhurydipanjan prototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT bartekjiri prototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence
AT gorgoulisvassilisg prototypicalnonmalignantepithelialmodeltostudygenomedynamicsandconcurrentlymonitormicrornasandproteinsinsituduringoncogeneinducedsenescence