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Metastasis of Tumor Cells Is Enhanced by Downregulation of Bit1

BACKGROUND: Resistance to anoikis, which is defined as apoptosis induced by loss of integrin-mediated cell attachment to the extracellular matrix, is a determinant of tumor progression and metastasis. We have previously identified the mitochondrial Bit1 (Bcl-2 inhibitor of transcription) protein as...

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Autores principales: Karmali, Priya Prakash, Brunquell, Chris, Tram, Hau, Ireland, Shubha Kale, Ruoslahti, Erkki, Biliran, Hector
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3160313/
https://www.ncbi.nlm.nih.gov/pubmed/21886829
http://dx.doi.org/10.1371/journal.pone.0023840
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author Karmali, Priya Prakash
Brunquell, Chris
Tram, Hau
Ireland, Shubha Kale
Ruoslahti, Erkki
Biliran, Hector
author_facet Karmali, Priya Prakash
Brunquell, Chris
Tram, Hau
Ireland, Shubha Kale
Ruoslahti, Erkki
Biliran, Hector
author_sort Karmali, Priya Prakash
collection PubMed
description BACKGROUND: Resistance to anoikis, which is defined as apoptosis induced by loss of integrin-mediated cell attachment to the extracellular matrix, is a determinant of tumor progression and metastasis. We have previously identified the mitochondrial Bit1 (Bcl-2 inhibitor of transcription) protein as a novel anoikis effector whose apoptotic function is independent from caspases and is uniquely controlled by integrins. In this report, we examined the possibility that Bit1 is suppressed during tumor progression and that Bit1 downregulation may play a role in tumor metastasis. METHODOLOGY/PRINCIPAL FINDINGS: Using a human breast tumor tissue array, we found that Bit1 expression is suppressed in a significant fraction of advanced stages of breast cancer. Targeted disruption of Bit1 via shRNA technology in lowly aggressive MCF7 cells conferred enhanced anoikis resistance, adhesive and migratory potential, which correlated with an increase in active Extracellular kinase regulated (Erk) levels and a decrease in Erk-directed phosphatase activity. These pro-metastasis phenotypes were also observed following downregulation of endogenous Bit1 in Hela and B16F1 cancer cell lines. The enhanced migratory and adhesive potential of Bit1 knockdown cells is in part dependent on their high level of Erk activation since down-regulating Erk in these cells attenuated their enhanced motility and adhesive properties. The Bit1 knockdown pools also showed a statistically highly significant increase in experimental lung metastasis, with no differences in tumor growth relative to control clones in vivo using a BALB/c nude mouse model system. Importantly, the pulmonary metastases of Bit1 knockdown cells exhibited increased phospho-Erk staining. CONCLUSIONS/SIGNIFICANCE: These findings indicate that downregulation of Bit1 conferred cancer cells with enhanced anoikis resistance, adhesive and migratory properties in vitro and specifically potentiated tumor metastasis in vivo. These results underscore the therapeutic importance of restoring Bit1 expression in cancer cells to circumvent metastasis at least in part through inhibition of the Erk pathway.
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spelling pubmed-31603132011-08-30 Metastasis of Tumor Cells Is Enhanced by Downregulation of Bit1 Karmali, Priya Prakash Brunquell, Chris Tram, Hau Ireland, Shubha Kale Ruoslahti, Erkki Biliran, Hector PLoS One Research Article BACKGROUND: Resistance to anoikis, which is defined as apoptosis induced by loss of integrin-mediated cell attachment to the extracellular matrix, is a determinant of tumor progression and metastasis. We have previously identified the mitochondrial Bit1 (Bcl-2 inhibitor of transcription) protein as a novel anoikis effector whose apoptotic function is independent from caspases and is uniquely controlled by integrins. In this report, we examined the possibility that Bit1 is suppressed during tumor progression and that Bit1 downregulation may play a role in tumor metastasis. METHODOLOGY/PRINCIPAL FINDINGS: Using a human breast tumor tissue array, we found that Bit1 expression is suppressed in a significant fraction of advanced stages of breast cancer. Targeted disruption of Bit1 via shRNA technology in lowly aggressive MCF7 cells conferred enhanced anoikis resistance, adhesive and migratory potential, which correlated with an increase in active Extracellular kinase regulated (Erk) levels and a decrease in Erk-directed phosphatase activity. These pro-metastasis phenotypes were also observed following downregulation of endogenous Bit1 in Hela and B16F1 cancer cell lines. The enhanced migratory and adhesive potential of Bit1 knockdown cells is in part dependent on their high level of Erk activation since down-regulating Erk in these cells attenuated their enhanced motility and adhesive properties. The Bit1 knockdown pools also showed a statistically highly significant increase in experimental lung metastasis, with no differences in tumor growth relative to control clones in vivo using a BALB/c nude mouse model system. Importantly, the pulmonary metastases of Bit1 knockdown cells exhibited increased phospho-Erk staining. CONCLUSIONS/SIGNIFICANCE: These findings indicate that downregulation of Bit1 conferred cancer cells with enhanced anoikis resistance, adhesive and migratory properties in vitro and specifically potentiated tumor metastasis in vivo. These results underscore the therapeutic importance of restoring Bit1 expression in cancer cells to circumvent metastasis at least in part through inhibition of the Erk pathway. Public Library of Science 2011-08-23 /pmc/articles/PMC3160313/ /pubmed/21886829 http://dx.doi.org/10.1371/journal.pone.0023840 Text en Karmali 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
Karmali, Priya Prakash
Brunquell, Chris
Tram, Hau
Ireland, Shubha Kale
Ruoslahti, Erkki
Biliran, Hector
Metastasis of Tumor Cells Is Enhanced by Downregulation of Bit1
title Metastasis of Tumor Cells Is Enhanced by Downregulation of Bit1
title_full Metastasis of Tumor Cells Is Enhanced by Downregulation of Bit1
title_fullStr Metastasis of Tumor Cells Is Enhanced by Downregulation of Bit1
title_full_unstemmed Metastasis of Tumor Cells Is Enhanced by Downregulation of Bit1
title_short Metastasis of Tumor Cells Is Enhanced by Downregulation of Bit1
title_sort metastasis of tumor cells is enhanced by downregulation of bit1
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3160313/
https://www.ncbi.nlm.nih.gov/pubmed/21886829
http://dx.doi.org/10.1371/journal.pone.0023840
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