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The ErbB2ΔEx16 splice variant is a major oncogenic driver in breast cancer that promotes a pro-metastatic tumor microenvironment

Amplification and over expression of erbB2/neu proto-oncogene is observed in 20–30% human breast cancer and is inversely correlated with the survival of the patient. Despite this, somatic activating mutations within erbB2 in human breast cancers are rare. However, we have previously reported that a...

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Autores principales: Turpin, Jason, Ling, Chen, Crosby, Erika J., Hartmann, Zachary C., Simond, Alexandra M., Chodosh, Lewis A., Rennhack, Jonathan P., Andrechek, Eran R., Ozcelik, John, Hallett, Michael, Mills, Gordon B., Cardiff, Robert D., Gray, Joe W., Griffith, Obi L., Muller, William J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5102823/
https://www.ncbi.nlm.nih.gov/pubmed/27157621
http://dx.doi.org/10.1038/onc.2016.129
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author Turpin, Jason
Ling, Chen
Crosby, Erika J.
Hartmann, Zachary C.
Simond, Alexandra M.
Chodosh, Lewis A.
Rennhack, Jonathan P.
Andrechek, Eran R.
Ozcelik, John
Hallett, Michael
Mills, Gordon B.
Cardiff, Robert D.
Gray, Joe W.
Griffith, Obi L.
Muller, William J.
author_facet Turpin, Jason
Ling, Chen
Crosby, Erika J.
Hartmann, Zachary C.
Simond, Alexandra M.
Chodosh, Lewis A.
Rennhack, Jonathan P.
Andrechek, Eran R.
Ozcelik, John
Hallett, Michael
Mills, Gordon B.
Cardiff, Robert D.
Gray, Joe W.
Griffith, Obi L.
Muller, William J.
author_sort Turpin, Jason
collection PubMed
description Amplification and over expression of erbB2/neu proto-oncogene is observed in 20–30% human breast cancer and is inversely correlated with the survival of the patient. Despite this, somatic activating mutations within erbB2 in human breast cancers are rare. However, we have previously reported that a splice isoform of erbB2, containing an in-frame deletion of exon 16 (herein referred to as ErbB2ΔEx16), results in oncogenic activation of erbB2 due to constitutive dimerization of the ErbB2 receptor. Here, we demonstrate that the ErbB2ΔEx16 is a major oncogenic driver in breast cancer that constitutively signals from the cell surface. We further show that inducible expression of the ErbB2Ex16 variant in mammary gland of transgenic mice results in the rapid development of metastatic multifocal mammary tumors. Genetic and biochemical characterization of the ErbB2ΔEx16 derived mammary tumors exhibit several unique features that distinguish it from the conventional ErbB2 models expressing the erbB2 proto-oncogene in mammary epithelium. Unlike the wild-type ErbB2 derived tumors that express luminal keratins, ErbB2ΔEx16 derived tumors exhibit high degree of intra-tumoral heterogeneity co-expressing both basal and luminal keratins. Consistent with these distinct pathological features, the ErbB2ΔEx16 tumors exhibited distinct signaling and gene expression profiles that correlated with activation of number of key transcription factors implicated in breast cancer metastasis and cancer stem cell renewal.
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spelling pubmed-51028232016-11-28 The ErbB2ΔEx16 splice variant is a major oncogenic driver in breast cancer that promotes a pro-metastatic tumor microenvironment Turpin, Jason Ling, Chen Crosby, Erika J. Hartmann, Zachary C. Simond, Alexandra M. Chodosh, Lewis A. Rennhack, Jonathan P. Andrechek, Eran R. Ozcelik, John Hallett, Michael Mills, Gordon B. Cardiff, Robert D. Gray, Joe W. Griffith, Obi L. Muller, William J. Oncogene Article Amplification and over expression of erbB2/neu proto-oncogene is observed in 20–30% human breast cancer and is inversely correlated with the survival of the patient. Despite this, somatic activating mutations within erbB2 in human breast cancers are rare. However, we have previously reported that a splice isoform of erbB2, containing an in-frame deletion of exon 16 (herein referred to as ErbB2ΔEx16), results in oncogenic activation of erbB2 due to constitutive dimerization of the ErbB2 receptor. Here, we demonstrate that the ErbB2ΔEx16 is a major oncogenic driver in breast cancer that constitutively signals from the cell surface. We further show that inducible expression of the ErbB2Ex16 variant in mammary gland of transgenic mice results in the rapid development of metastatic multifocal mammary tumors. Genetic and biochemical characterization of the ErbB2ΔEx16 derived mammary tumors exhibit several unique features that distinguish it from the conventional ErbB2 models expressing the erbB2 proto-oncogene in mammary epithelium. Unlike the wild-type ErbB2 derived tumors that express luminal keratins, ErbB2ΔEx16 derived tumors exhibit high degree of intra-tumoral heterogeneity co-expressing both basal and luminal keratins. Consistent with these distinct pathological features, the ErbB2ΔEx16 tumors exhibited distinct signaling and gene expression profiles that correlated with activation of number of key transcription factors implicated in breast cancer metastasis and cancer stem cell renewal. 2016-05-09 2016-11-24 /pmc/articles/PMC5102823/ /pubmed/27157621 http://dx.doi.org/10.1038/onc.2016.129 Text en Users may view, print, copy, and download 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
Turpin, Jason
Ling, Chen
Crosby, Erika J.
Hartmann, Zachary C.
Simond, Alexandra M.
Chodosh, Lewis A.
Rennhack, Jonathan P.
Andrechek, Eran R.
Ozcelik, John
Hallett, Michael
Mills, Gordon B.
Cardiff, Robert D.
Gray, Joe W.
Griffith, Obi L.
Muller, William J.
The ErbB2ΔEx16 splice variant is a major oncogenic driver in breast cancer that promotes a pro-metastatic tumor microenvironment
title The ErbB2ΔEx16 splice variant is a major oncogenic driver in breast cancer that promotes a pro-metastatic tumor microenvironment
title_full The ErbB2ΔEx16 splice variant is a major oncogenic driver in breast cancer that promotes a pro-metastatic tumor microenvironment
title_fullStr The ErbB2ΔEx16 splice variant is a major oncogenic driver in breast cancer that promotes a pro-metastatic tumor microenvironment
title_full_unstemmed The ErbB2ΔEx16 splice variant is a major oncogenic driver in breast cancer that promotes a pro-metastatic tumor microenvironment
title_short The ErbB2ΔEx16 splice variant is a major oncogenic driver in breast cancer that promotes a pro-metastatic tumor microenvironment
title_sort erbb2δex16 splice variant is a major oncogenic driver in breast cancer that promotes a pro-metastatic tumor microenvironment
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5102823/
https://www.ncbi.nlm.nih.gov/pubmed/27157621
http://dx.doi.org/10.1038/onc.2016.129
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