FGFR2 promotes breast tumorigenicity through maintenance of breast tumor-initiating cells.
Emerging evidence suggests that some cancers contain a population of stem-like TICs (tumor-initiating cells) and eliminating TICs may offer a new strategy to develop successful anti-cancer therapies. As molecular mechanisms underlying the maintenance of the TIC pool are poorly understood, the develo...
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doaj-afc46a5f03ad4a36ab847a73399cac562020-11-25T01:53:26ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0181e5167110.1371/journal.pone.0051671FGFR2 promotes breast tumorigenicity through maintenance of breast tumor-initiating cells.Sungeun KimAnna DubrovskaRichard J SalamoneJohn R WalkerKathryn B GrandinettiGhislain M C BonamyAnthony P OrthJimmy ElliottDiana Graus PortaCarlos Garcia-EcheverriaVenkateshwar A ReddyEmerging evidence suggests that some cancers contain a population of stem-like TICs (tumor-initiating cells) and eliminating TICs may offer a new strategy to develop successful anti-cancer therapies. As molecular mechanisms underlying the maintenance of the TIC pool are poorly understood, the development of TIC-specific therapeutics remains a major challenge. We first identified and characterized TICs and non-TICs isolated from a mouse breast cancer model. TICs displayed increased tumorigenic potential, self-renewal, heterogeneous differentiation, and bipotency. Gene expression analysis and immunostaining of TICs and non-TICs revealed that FGFR2 was preferentially expressed in TICs. Loss of FGFR2 impaired self-renewal of TICs, thus resulting in marked decreases in the TIC population and tumorigenic potential. Restoration of FGFR2 rescued the defects in TIC pool maintenance, bipotency, and breast tumor growth driven by FGFR2 knockdown. In addition, pharmacological inhibition of FGFR2 kinase activity led to a decrease in the TIC population which resulted in suppression of breast tumor growth. Moreover, human breast TICs isolated from patient tumor samples were found enriched in a FGFR2+ population that was sufficient to initiate tumor growth. Our data suggest that FGFR2 is essential in sustaining the breast TIC pool through promotion of self-renewal and maintenance of bipotent TICs, and raise the possibility of FGFR2 inhibition as a strategy for anti-cancer therapy by eradicating breast TICs.http://europepmc.org/articles/PMC3534701?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sungeun Kim Anna Dubrovska Richard J Salamone John R Walker Kathryn B Grandinetti Ghislain M C Bonamy Anthony P Orth Jimmy Elliott Diana Graus Porta Carlos Garcia-Echeverria Venkateshwar A Reddy |
spellingShingle |
Sungeun Kim Anna Dubrovska Richard J Salamone John R Walker Kathryn B Grandinetti Ghislain M C Bonamy Anthony P Orth Jimmy Elliott Diana Graus Porta Carlos Garcia-Echeverria Venkateshwar A Reddy FGFR2 promotes breast tumorigenicity through maintenance of breast tumor-initiating cells. PLoS ONE |
author_facet |
Sungeun Kim Anna Dubrovska Richard J Salamone John R Walker Kathryn B Grandinetti Ghislain M C Bonamy Anthony P Orth Jimmy Elliott Diana Graus Porta Carlos Garcia-Echeverria Venkateshwar A Reddy |
author_sort |
Sungeun Kim |
title |
FGFR2 promotes breast tumorigenicity through maintenance of breast tumor-initiating cells. |
title_short |
FGFR2 promotes breast tumorigenicity through maintenance of breast tumor-initiating cells. |
title_full |
FGFR2 promotes breast tumorigenicity through maintenance of breast tumor-initiating cells. |
title_fullStr |
FGFR2 promotes breast tumorigenicity through maintenance of breast tumor-initiating cells. |
title_full_unstemmed |
FGFR2 promotes breast tumorigenicity through maintenance of breast tumor-initiating cells. |
title_sort |
fgfr2 promotes breast tumorigenicity through maintenance of breast tumor-initiating cells. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2013-01-01 |
description |
Emerging evidence suggests that some cancers contain a population of stem-like TICs (tumor-initiating cells) and eliminating TICs may offer a new strategy to develop successful anti-cancer therapies. As molecular mechanisms underlying the maintenance of the TIC pool are poorly understood, the development of TIC-specific therapeutics remains a major challenge. We first identified and characterized TICs and non-TICs isolated from a mouse breast cancer model. TICs displayed increased tumorigenic potential, self-renewal, heterogeneous differentiation, and bipotency. Gene expression analysis and immunostaining of TICs and non-TICs revealed that FGFR2 was preferentially expressed in TICs. Loss of FGFR2 impaired self-renewal of TICs, thus resulting in marked decreases in the TIC population and tumorigenic potential. Restoration of FGFR2 rescued the defects in TIC pool maintenance, bipotency, and breast tumor growth driven by FGFR2 knockdown. In addition, pharmacological inhibition of FGFR2 kinase activity led to a decrease in the TIC population which resulted in suppression of breast tumor growth. Moreover, human breast TICs isolated from patient tumor samples were found enriched in a FGFR2+ population that was sufficient to initiate tumor growth. Our data suggest that FGFR2 is essential in sustaining the breast TIC pool through promotion of self-renewal and maintenance of bipotent TICs, and raise the possibility of FGFR2 inhibition as a strategy for anti-cancer therapy by eradicating breast TICs. |
url |
http://europepmc.org/articles/PMC3534701?pdf=render |
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