Cargando…

The miR-106b-25 cluster targets Smad7, activates TGF-β signaling, and induces EMT and tumor initiating cell characteristics downstream of Six1 in human breast cancer

The role of TGF-β signaling in tumorigenesis is paradoxical: it can be tumor suppressive or tumor promotional, depending on context. The metastatic regulator, Six1, was recently shown to mediate this switch, providing a novel means to explain this elusive “TGF-β paradox”. Herein, we identify a mecha...

Descripción completa

Detalles Bibliográficos
Autores principales: Smith, Anna L., Iwanaga, Ritsuko, Drasin, David J., Micalizzi, Douglas S., Vartuli, Rebecca L, Tan, Aik-Choon, Ford, Heide L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3342483/
https://www.ncbi.nlm.nih.gov/pubmed/22286770
http://dx.doi.org/10.1038/onc.2012.11
_version_ 1782231696503996416
author Smith, Anna L.
Iwanaga, Ritsuko
Drasin, David J.
Micalizzi, Douglas S.
Vartuli, Rebecca L
Tan, Aik-Choon
Ford, Heide L.
author_facet Smith, Anna L.
Iwanaga, Ritsuko
Drasin, David J.
Micalizzi, Douglas S.
Vartuli, Rebecca L
Tan, Aik-Choon
Ford, Heide L.
author_sort Smith, Anna L.
collection PubMed
description The role of TGF-β signaling in tumorigenesis is paradoxical: it can be tumor suppressive or tumor promotional, depending on context. The metastatic regulator, Six1, was recently shown to mediate this switch, providing a novel means to explain this elusive “TGF-β paradox”. Herein, we identify a mechanism by which Six1 activates the tumor promotional arm of TGF-β signaling, via its ability to upregulate the miR-106b-25 microRNA cluster, and further identify a novel function for this cluster of microRNAs. While expression of the miR-106b-25 cluster is known to overcome TGF-β-mediated growth suppression via targeting p21 and BIM, we demonstrate for the first time that this same cluster can additionally target the inhibitory Smad7 protein, resulting in increased levels of the TGF-β type I receptor (TβRI) and downstream activation of TGF-β signaling. We further show that the miR-106b-25 cluster is sufficient to induce an epithelial to mesenchymal transition and a tumor initiating cell phenotype, and that it is required downstream of Six1 to induce these phenotypes. Finally, we demonstrate a significant correlation between miR-106b, Six1, and activated TGF-β signaling in human breast cancers, and further show that high levels of miR-106b and miR-93 in breast tumors significantly predicts shortened time to relapse. These findings expand the spectrum of oncogenic functions of miR-106b-25, and may provide a novel molecular explanation, through the Six1 regulated miR-106b-25 cluster, by which TGF-β signaling shifts from tumor suppressive to tumor promoting.
format Online
Article
Text
id pubmed-3342483
institution National Center for Biotechnology Information
language English
publishDate 2012
record_format MEDLINE/PubMed
spelling pubmed-33424832013-06-13 The miR-106b-25 cluster targets Smad7, activates TGF-β signaling, and induces EMT and tumor initiating cell characteristics downstream of Six1 in human breast cancer Smith, Anna L. Iwanaga, Ritsuko Drasin, David J. Micalizzi, Douglas S. Vartuli, Rebecca L Tan, Aik-Choon Ford, Heide L. Oncogene Article The role of TGF-β signaling in tumorigenesis is paradoxical: it can be tumor suppressive or tumor promotional, depending on context. The metastatic regulator, Six1, was recently shown to mediate this switch, providing a novel means to explain this elusive “TGF-β paradox”. Herein, we identify a mechanism by which Six1 activates the tumor promotional arm of TGF-β signaling, via its ability to upregulate the miR-106b-25 microRNA cluster, and further identify a novel function for this cluster of microRNAs. While expression of the miR-106b-25 cluster is known to overcome TGF-β-mediated growth suppression via targeting p21 and BIM, we demonstrate for the first time that this same cluster can additionally target the inhibitory Smad7 protein, resulting in increased levels of the TGF-β type I receptor (TβRI) and downstream activation of TGF-β signaling. We further show that the miR-106b-25 cluster is sufficient to induce an epithelial to mesenchymal transition and a tumor initiating cell phenotype, and that it is required downstream of Six1 to induce these phenotypes. Finally, we demonstrate a significant correlation between miR-106b, Six1, and activated TGF-β signaling in human breast cancers, and further show that high levels of miR-106b and miR-93 in breast tumors significantly predicts shortened time to relapse. These findings expand the spectrum of oncogenic functions of miR-106b-25, and may provide a novel molecular explanation, through the Six1 regulated miR-106b-25 cluster, by which TGF-β signaling shifts from tumor suppressive to tumor promoting. 2012-01-30 2012-12-13 /pmc/articles/PMC3342483/ /pubmed/22286770 http://dx.doi.org/10.1038/onc.2012.11 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Smith, Anna L.
Iwanaga, Ritsuko
Drasin, David J.
Micalizzi, Douglas S.
Vartuli, Rebecca L
Tan, Aik-Choon
Ford, Heide L.
The miR-106b-25 cluster targets Smad7, activates TGF-β signaling, and induces EMT and tumor initiating cell characteristics downstream of Six1 in human breast cancer
title The miR-106b-25 cluster targets Smad7, activates TGF-β signaling, and induces EMT and tumor initiating cell characteristics downstream of Six1 in human breast cancer
title_full The miR-106b-25 cluster targets Smad7, activates TGF-β signaling, and induces EMT and tumor initiating cell characteristics downstream of Six1 in human breast cancer
title_fullStr The miR-106b-25 cluster targets Smad7, activates TGF-β signaling, and induces EMT and tumor initiating cell characteristics downstream of Six1 in human breast cancer
title_full_unstemmed The miR-106b-25 cluster targets Smad7, activates TGF-β signaling, and induces EMT and tumor initiating cell characteristics downstream of Six1 in human breast cancer
title_short The miR-106b-25 cluster targets Smad7, activates TGF-β signaling, and induces EMT and tumor initiating cell characteristics downstream of Six1 in human breast cancer
title_sort mir-106b-25 cluster targets smad7, activates tgf-β signaling, and induces emt and tumor initiating cell characteristics downstream of six1 in human breast cancer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3342483/
https://www.ncbi.nlm.nih.gov/pubmed/22286770
http://dx.doi.org/10.1038/onc.2012.11
work_keys_str_mv AT smithannal themir106b25clustertargetssmad7activatestgfbsignalingandinducesemtandtumorinitiatingcellcharacteristicsdownstreamofsix1inhumanbreastcancer
AT iwanagaritsuko themir106b25clustertargetssmad7activatestgfbsignalingandinducesemtandtumorinitiatingcellcharacteristicsdownstreamofsix1inhumanbreastcancer
AT drasindavidj themir106b25clustertargetssmad7activatestgfbsignalingandinducesemtandtumorinitiatingcellcharacteristicsdownstreamofsix1inhumanbreastcancer
AT micalizzidouglass themir106b25clustertargetssmad7activatestgfbsignalingandinducesemtandtumorinitiatingcellcharacteristicsdownstreamofsix1inhumanbreastcancer
AT vartulirebeccal themir106b25clustertargetssmad7activatestgfbsignalingandinducesemtandtumorinitiatingcellcharacteristicsdownstreamofsix1inhumanbreastcancer
AT tanaikchoon themir106b25clustertargetssmad7activatestgfbsignalingandinducesemtandtumorinitiatingcellcharacteristicsdownstreamofsix1inhumanbreastcancer
AT fordheidel themir106b25clustertargetssmad7activatestgfbsignalingandinducesemtandtumorinitiatingcellcharacteristicsdownstreamofsix1inhumanbreastcancer
AT smithannal mir106b25clustertargetssmad7activatestgfbsignalingandinducesemtandtumorinitiatingcellcharacteristicsdownstreamofsix1inhumanbreastcancer
AT iwanagaritsuko mir106b25clustertargetssmad7activatestgfbsignalingandinducesemtandtumorinitiatingcellcharacteristicsdownstreamofsix1inhumanbreastcancer
AT drasindavidj mir106b25clustertargetssmad7activatestgfbsignalingandinducesemtandtumorinitiatingcellcharacteristicsdownstreamofsix1inhumanbreastcancer
AT micalizzidouglass mir106b25clustertargetssmad7activatestgfbsignalingandinducesemtandtumorinitiatingcellcharacteristicsdownstreamofsix1inhumanbreastcancer
AT vartulirebeccal mir106b25clustertargetssmad7activatestgfbsignalingandinducesemtandtumorinitiatingcellcharacteristicsdownstreamofsix1inhumanbreastcancer
AT tanaikchoon mir106b25clustertargetssmad7activatestgfbsignalingandinducesemtandtumorinitiatingcellcharacteristicsdownstreamofsix1inhumanbreastcancer
AT fordheidel mir106b25clustertargetssmad7activatestgfbsignalingandinducesemtandtumorinitiatingcellcharacteristicsdownstreamofsix1inhumanbreastcancer