Cargando…

The miR-17-92 cluster counteracts quiescence and chemoresistance in a distinct subpopulation of pancreatic cancer stem cells

OBJECTIVE: Cancer stem cells (CSCs) represent the root of many solid cancers including pancreatic ductal adenocarcinoma, are highly chemoresistant and represent the cellular source for disease relapse. However the mechanisms involved in these processes still need to be fully elucidated. Understandin...

Descripción completa

Detalles Bibliográficos
Autores principales: Cioffi, Michele, Trabulo, Sara M, Sanchez-Ripoll, Yolanda, Miranda-Lorenzo, Irene, Lonardo, Enza, Dorado, Jorge, Reis Vieira, Catarina, Ramirez, Juan Carlos, Hidalgo, Manuel, Aicher, Alexandra, Hahn, Stephan, Sainz, Bruno, Heeschen, Christopher
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BMJ Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4680182/
https://www.ncbi.nlm.nih.gov/pubmed/25887381
http://dx.doi.org/10.1136/gutjnl-2014-308470
_version_ 1782405647513419776
author Cioffi, Michele
Trabulo, Sara M
Sanchez-Ripoll, Yolanda
Miranda-Lorenzo, Irene
Lonardo, Enza
Dorado, Jorge
Reis Vieira, Catarina
Ramirez, Juan Carlos
Hidalgo, Manuel
Aicher, Alexandra
Hahn, Stephan
Sainz, Bruno
Heeschen, Christopher
author_facet Cioffi, Michele
Trabulo, Sara M
Sanchez-Ripoll, Yolanda
Miranda-Lorenzo, Irene
Lonardo, Enza
Dorado, Jorge
Reis Vieira, Catarina
Ramirez, Juan Carlos
Hidalgo, Manuel
Aicher, Alexandra
Hahn, Stephan
Sainz, Bruno
Heeschen, Christopher
author_sort Cioffi, Michele
collection PubMed
description OBJECTIVE: Cancer stem cells (CSCs) represent the root of many solid cancers including pancreatic ductal adenocarcinoma, are highly chemoresistant and represent the cellular source for disease relapse. However the mechanisms involved in these processes still need to be fully elucidated. Understanding the mechanisms implicated in chemoresistance and metastasis of pancreatic cancer is critical to improving patient outcomes. DESIGN: Micro-RNA (miRNA) expression analyses were performed to identify functionally defining epigenetic signatures in pancreatic CSC-enriched sphere-derived cells and gemcitabine-resistant pancreatic CSCs. RESULTS: We found the miR-17-92 cluster to be downregulated in chemoresistant CSCs versus non-CSCs and demonstrate its crucial relevance for CSC biology. In particular, overexpression of miR-17-92 reduced CSC self-renewal capacity, in vivo tumourigenicity and chemoresistance by targeting multiple NODAL/ACTIVIN/TGF-β1 signalling cascade members as well as directly inhibiting the downstream targets p21, p57 and TBX3. Overexpression of miR-17-92 translated into increased CSC proliferation and their eventual exhaustion via downregulation of p21 and p57. Finally, the translational impact of our findings could be confirmed in preclinical models for pancreatic cancer. CONCLUSIONS: Our findings therefore identify the miR-17-92 cluster as a functionally determining family of miRNAs in CSCs, and highlight the putative potential of developing modulators of this cluster to overcome drug resistance in pancreatic CSCs.
format Online
Article
Text
id pubmed-4680182
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher BMJ Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-46801822015-12-18 The miR-17-92 cluster counteracts quiescence and chemoresistance in a distinct subpopulation of pancreatic cancer stem cells Cioffi, Michele Trabulo, Sara M Sanchez-Ripoll, Yolanda Miranda-Lorenzo, Irene Lonardo, Enza Dorado, Jorge Reis Vieira, Catarina Ramirez, Juan Carlos Hidalgo, Manuel Aicher, Alexandra Hahn, Stephan Sainz, Bruno Heeschen, Christopher Gut Pancreas OBJECTIVE: Cancer stem cells (CSCs) represent the root of many solid cancers including pancreatic ductal adenocarcinoma, are highly chemoresistant and represent the cellular source for disease relapse. However the mechanisms involved in these processes still need to be fully elucidated. Understanding the mechanisms implicated in chemoresistance and metastasis of pancreatic cancer is critical to improving patient outcomes. DESIGN: Micro-RNA (miRNA) expression analyses were performed to identify functionally defining epigenetic signatures in pancreatic CSC-enriched sphere-derived cells and gemcitabine-resistant pancreatic CSCs. RESULTS: We found the miR-17-92 cluster to be downregulated in chemoresistant CSCs versus non-CSCs and demonstrate its crucial relevance for CSC biology. In particular, overexpression of miR-17-92 reduced CSC self-renewal capacity, in vivo tumourigenicity and chemoresistance by targeting multiple NODAL/ACTIVIN/TGF-β1 signalling cascade members as well as directly inhibiting the downstream targets p21, p57 and TBX3. Overexpression of miR-17-92 translated into increased CSC proliferation and their eventual exhaustion via downregulation of p21 and p57. Finally, the translational impact of our findings could be confirmed in preclinical models for pancreatic cancer. CONCLUSIONS: Our findings therefore identify the miR-17-92 cluster as a functionally determining family of miRNAs in CSCs, and highlight the putative potential of developing modulators of this cluster to overcome drug resistance in pancreatic CSCs. BMJ Publishing Group 2015-12 2015-04-17 /pmc/articles/PMC4680182/ /pubmed/25887381 http://dx.doi.org/10.1136/gutjnl-2014-308470 Text en Published by the BMJ Publishing Group Limited. For permission to use (where not already granted under a licence) please go to http://www.bmj.com/company/products-services/rights-and-licensing/ This is an Open Access article distributed in accordance with the Creative Commons Attribution Non Commercial (CC BY-NC 4.0) license, which permits others to distribute, remix, adapt, build upon this work non-commercially, and license their derivative works on different terms, provided the original work is properly cited and the use is non-commercial. See: http://creativecommons.org/licenses/by-nc/4.0/
spellingShingle Pancreas
Cioffi, Michele
Trabulo, Sara M
Sanchez-Ripoll, Yolanda
Miranda-Lorenzo, Irene
Lonardo, Enza
Dorado, Jorge
Reis Vieira, Catarina
Ramirez, Juan Carlos
Hidalgo, Manuel
Aicher, Alexandra
Hahn, Stephan
Sainz, Bruno
Heeschen, Christopher
The miR-17-92 cluster counteracts quiescence and chemoresistance in a distinct subpopulation of pancreatic cancer stem cells
title The miR-17-92 cluster counteracts quiescence and chemoresistance in a distinct subpopulation of pancreatic cancer stem cells
title_full The miR-17-92 cluster counteracts quiescence and chemoresistance in a distinct subpopulation of pancreatic cancer stem cells
title_fullStr The miR-17-92 cluster counteracts quiescence and chemoresistance in a distinct subpopulation of pancreatic cancer stem cells
title_full_unstemmed The miR-17-92 cluster counteracts quiescence and chemoresistance in a distinct subpopulation of pancreatic cancer stem cells
title_short The miR-17-92 cluster counteracts quiescence and chemoresistance in a distinct subpopulation of pancreatic cancer stem cells
title_sort mir-17-92 cluster counteracts quiescence and chemoresistance in a distinct subpopulation of pancreatic cancer stem cells
topic Pancreas
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4680182/
https://www.ncbi.nlm.nih.gov/pubmed/25887381
http://dx.doi.org/10.1136/gutjnl-2014-308470
work_keys_str_mv AT cioffimichele themir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells
AT trabulosaram themir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells
AT sanchezripollyolanda themir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells
AT mirandalorenzoirene themir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells
AT lonardoenza themir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells
AT doradojorge themir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells
AT reisvieiracatarina themir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells
AT ramirezjuancarlos themir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells
AT hidalgomanuel themir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells
AT aicheralexandra themir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells
AT hahnstephan themir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells
AT sainzbruno themir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells
AT heeschenchristopher themir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells
AT cioffimichele mir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells
AT trabulosaram mir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells
AT sanchezripollyolanda mir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells
AT mirandalorenzoirene mir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells
AT lonardoenza mir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells
AT doradojorge mir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells
AT reisvieiracatarina mir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells
AT ramirezjuancarlos mir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells
AT hidalgomanuel mir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells
AT aicheralexandra mir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells
AT hahnstephan mir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells
AT sainzbruno mir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells
AT heeschenchristopher mir1792clustercounteractsquiescenceandchemoresistanceinadistinctsubpopulationofpancreaticcancerstemcells