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Versican G3 Promotes Mouse Mammary Tumor Cell Growth, Migration, and Metastasis by Influencing EGF Receptor Signaling

Increased versican expression in breast tumors is predictive of relapse and has negative impact on survival rates. The C-terminal G3 domain of versican influences local and systemic tumor invasiveness in pre-clinical murine models. However, the mechanism(s) by which G3 influences breast tumor growth...

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Autores principales: Du, William Weidong, Yang, Burton B., Shatseva, Tatiana A., Yang, Bing L., Deng, Zhaoqun, Shan, Sze Wan, Lee, Daniel Y., Seth, Arun, Yee, Albert J.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2974650/
https://www.ncbi.nlm.nih.gov/pubmed/21079779
http://dx.doi.org/10.1371/journal.pone.0013828
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author Du, William Weidong
Yang, Burton B.
Shatseva, Tatiana A.
Yang, Bing L.
Deng, Zhaoqun
Shan, Sze Wan
Lee, Daniel Y.
Seth, Arun
Yee, Albert J.
author_facet Du, William Weidong
Yang, Burton B.
Shatseva, Tatiana A.
Yang, Bing L.
Deng, Zhaoqun
Shan, Sze Wan
Lee, Daniel Y.
Seth, Arun
Yee, Albert J.
author_sort Du, William Weidong
collection PubMed
description Increased versican expression in breast tumors is predictive of relapse and has negative impact on survival rates. The C-terminal G3 domain of versican influences local and systemic tumor invasiveness in pre-clinical murine models. However, the mechanism(s) by which G3 influences breast tumor growth and metastasis is not well characterized. Here we evaluated the expression of versican in mouse mammary tumor cell lines observing that 4T1 cells expressed highest levels while 66c14 cells expressed low levels. We exogenously expressed a G3 construct in 66c14 cells and analyzed its effects on cell proliferation, migration, cell cycle progression, and EGFR signaling. Experiments in a syngeneic orthotopic animal model demonstrated that G3 promoted tumor growth and systemic metastasis in vivo. Activation of pERK correlated with high levels of G3 expression. In vitro, G3 enhanced breast cancer cell proliferation and migration by up-regulating EGFR signaling, and enhanced cell motility through chemotactic mechanisms to bone stromal cells, which was prevented by inhibitor AG 1478. G3 expressing cells demonstrated increased CDK2 and GSK-3β (S9P) expression, which were related to cell growth. The activity of G3 on mouse mammary tumor cell growth, migration and its effect on spontaneous metastasis to bone in an orthotopic model was modulated by up-regulating the EGFR-mediated signaling pathway. Taken together, EGFR-signaling appears to be an important pathway in versican G3-mediated breast cancer tumor invasiveness and metastasis.
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spelling pubmed-29746502010-11-15 Versican G3 Promotes Mouse Mammary Tumor Cell Growth, Migration, and Metastasis by Influencing EGF Receptor Signaling Du, William Weidong Yang, Burton B. Shatseva, Tatiana A. Yang, Bing L. Deng, Zhaoqun Shan, Sze Wan Lee, Daniel Y. Seth, Arun Yee, Albert J. PLoS One Research Article Increased versican expression in breast tumors is predictive of relapse and has negative impact on survival rates. The C-terminal G3 domain of versican influences local and systemic tumor invasiveness in pre-clinical murine models. However, the mechanism(s) by which G3 influences breast tumor growth and metastasis is not well characterized. Here we evaluated the expression of versican in mouse mammary tumor cell lines observing that 4T1 cells expressed highest levels while 66c14 cells expressed low levels. We exogenously expressed a G3 construct in 66c14 cells and analyzed its effects on cell proliferation, migration, cell cycle progression, and EGFR signaling. Experiments in a syngeneic orthotopic animal model demonstrated that G3 promoted tumor growth and systemic metastasis in vivo. Activation of pERK correlated with high levels of G3 expression. In vitro, G3 enhanced breast cancer cell proliferation and migration by up-regulating EGFR signaling, and enhanced cell motility through chemotactic mechanisms to bone stromal cells, which was prevented by inhibitor AG 1478. G3 expressing cells demonstrated increased CDK2 and GSK-3β (S9P) expression, which were related to cell growth. The activity of G3 on mouse mammary tumor cell growth, migration and its effect on spontaneous metastasis to bone in an orthotopic model was modulated by up-regulating the EGFR-mediated signaling pathway. Taken together, EGFR-signaling appears to be an important pathway in versican G3-mediated breast cancer tumor invasiveness and metastasis. Public Library of Science 2010-11-05 /pmc/articles/PMC2974650/ /pubmed/21079779 http://dx.doi.org/10.1371/journal.pone.0013828 Text en Du et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Du, William Weidong
Yang, Burton B.
Shatseva, Tatiana A.
Yang, Bing L.
Deng, Zhaoqun
Shan, Sze Wan
Lee, Daniel Y.
Seth, Arun
Yee, Albert J.
Versican G3 Promotes Mouse Mammary Tumor Cell Growth, Migration, and Metastasis by Influencing EGF Receptor Signaling
title Versican G3 Promotes Mouse Mammary Tumor Cell Growth, Migration, and Metastasis by Influencing EGF Receptor Signaling
title_full Versican G3 Promotes Mouse Mammary Tumor Cell Growth, Migration, and Metastasis by Influencing EGF Receptor Signaling
title_fullStr Versican G3 Promotes Mouse Mammary Tumor Cell Growth, Migration, and Metastasis by Influencing EGF Receptor Signaling
title_full_unstemmed Versican G3 Promotes Mouse Mammary Tumor Cell Growth, Migration, and Metastasis by Influencing EGF Receptor Signaling
title_short Versican G3 Promotes Mouse Mammary Tumor Cell Growth, Migration, and Metastasis by Influencing EGF Receptor Signaling
title_sort versican g3 promotes mouse mammary tumor cell growth, migration, and metastasis by influencing egf receptor signaling
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2974650/
https://www.ncbi.nlm.nih.gov/pubmed/21079779
http://dx.doi.org/10.1371/journal.pone.0013828
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