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Arg/Abl2 promotes invasion and attenuates proliferation of breast cancer in vivo

Tumor progression is a complex, multistep process involving accumulation of genetic aberrations and alterations in gene-expression patterns leading to uncontrolled cell division, invasion into surrounding tissue and finally dissemination and metastasis. We have previously shown that the Arg/Abl2 non...

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Autores principales: Gil-Henn, Hava, Patsialou, Antonia, Wang, Yarong, Warren, Michael Sloan, Condeelis, John S., Koleske, Anthony J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3473103/
https://www.ncbi.nlm.nih.gov/pubmed/22777352
http://dx.doi.org/10.1038/onc.2012.284
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author Gil-Henn, Hava
Patsialou, Antonia
Wang, Yarong
Warren, Michael Sloan
Condeelis, John S.
Koleske, Anthony J.
author_facet Gil-Henn, Hava
Patsialou, Antonia
Wang, Yarong
Warren, Michael Sloan
Condeelis, John S.
Koleske, Anthony J.
author_sort Gil-Henn, Hava
collection PubMed
description Tumor progression is a complex, multistep process involving accumulation of genetic aberrations and alterations in gene-expression patterns leading to uncontrolled cell division, invasion into surrounding tissue and finally dissemination and metastasis. We have previously shown that the Arg/Abl2 non-receptor tyrosine kinase acts downstream of the EGF receptor and Src tyrosine kinases to promote invadopodium function in breast cancer cells, thereby promoting their invasiveness. However, whether and how Arg contributes to tumor development and dissemination in vivo has never been investigated. Using a mouse xenograft model, we show that knocking down Arg in breast cancer cells leads to increased tumor cell proliferation and significantly enlarged tumor size. Despite having larger tumors, the Arg knockdown tumor-bearing mice exhibit significant reductions in tumor cell invasion, intravasation into blood vessels, and spontaneous metastasis to lungs. Interestingly, we found that proliferation-associated genes in the Ras-MAPK pathway are upregulated in Arg-knockdown breast cancer cells, as is Ras-MAPK signaling, while invasion-associated genes are significantly downregulated. These data suggest that Arg promotes tumor cell invasion and dissemination, while simultaneously inhibiting tumor growth. We propose that Arg acts as a switch in metastatic cancer cells that governs the decision to “grow or go” (divide or invade).
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spelling pubmed-34731032013-11-23 Arg/Abl2 promotes invasion and attenuates proliferation of breast cancer in vivo Gil-Henn, Hava Patsialou, Antonia Wang, Yarong Warren, Michael Sloan Condeelis, John S. Koleske, Anthony J. Oncogene Article Tumor progression is a complex, multistep process involving accumulation of genetic aberrations and alterations in gene-expression patterns leading to uncontrolled cell division, invasion into surrounding tissue and finally dissemination and metastasis. We have previously shown that the Arg/Abl2 non-receptor tyrosine kinase acts downstream of the EGF receptor and Src tyrosine kinases to promote invadopodium function in breast cancer cells, thereby promoting their invasiveness. However, whether and how Arg contributes to tumor development and dissemination in vivo has never been investigated. Using a mouse xenograft model, we show that knocking down Arg in breast cancer cells leads to increased tumor cell proliferation and significantly enlarged tumor size. Despite having larger tumors, the Arg knockdown tumor-bearing mice exhibit significant reductions in tumor cell invasion, intravasation into blood vessels, and spontaneous metastasis to lungs. Interestingly, we found that proliferation-associated genes in the Ras-MAPK pathway are upregulated in Arg-knockdown breast cancer cells, as is Ras-MAPK signaling, while invasion-associated genes are significantly downregulated. These data suggest that Arg promotes tumor cell invasion and dissemination, while simultaneously inhibiting tumor growth. We propose that Arg acts as a switch in metastatic cancer cells that governs the decision to “grow or go” (divide or invade). 2012-07-09 2013-05-23 /pmc/articles/PMC3473103/ /pubmed/22777352 http://dx.doi.org/10.1038/onc.2012.284 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
Gil-Henn, Hava
Patsialou, Antonia
Wang, Yarong
Warren, Michael Sloan
Condeelis, John S.
Koleske, Anthony J.
Arg/Abl2 promotes invasion and attenuates proliferation of breast cancer in vivo
title Arg/Abl2 promotes invasion and attenuates proliferation of breast cancer in vivo
title_full Arg/Abl2 promotes invasion and attenuates proliferation of breast cancer in vivo
title_fullStr Arg/Abl2 promotes invasion and attenuates proliferation of breast cancer in vivo
title_full_unstemmed Arg/Abl2 promotes invasion and attenuates proliferation of breast cancer in vivo
title_short Arg/Abl2 promotes invasion and attenuates proliferation of breast cancer in vivo
title_sort arg/abl2 promotes invasion and attenuates proliferation of breast cancer in vivo
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3473103/
https://www.ncbi.nlm.nih.gov/pubmed/22777352
http://dx.doi.org/10.1038/onc.2012.284
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