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The MSP‐RON axis stimulates cancer cell growth in models of triple negative breast cancer

Triple‐negative breast cancer (TNBC) is the most aggressive subtype of breast cancer with poor prognosis and high rates of relapse. The lack of actionable targets for TNBC has contributed to the high mortality rates of this disease, and new candidate molecules for potential manipulation are urgently...

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Autores principales: Millar, Rhona, Kilbey, Anna, Remak, Sarah‐Jane, Severson, Tesa M., Dhayade, Sandeep, Sandilands, Emma, Foster, Kyla, Bryant, David M., Blyth, Karen, Coffelt, Seth B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7400785/
https://www.ncbi.nlm.nih.gov/pubmed/32484599
http://dx.doi.org/10.1002/1878-0261.12734
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author Millar, Rhona
Kilbey, Anna
Remak, Sarah‐Jane
Severson, Tesa M.
Dhayade, Sandeep
Sandilands, Emma
Foster, Kyla
Bryant, David M.
Blyth, Karen
Coffelt, Seth B.
author_facet Millar, Rhona
Kilbey, Anna
Remak, Sarah‐Jane
Severson, Tesa M.
Dhayade, Sandeep
Sandilands, Emma
Foster, Kyla
Bryant, David M.
Blyth, Karen
Coffelt, Seth B.
author_sort Millar, Rhona
collection PubMed
description Triple‐negative breast cancer (TNBC) is the most aggressive subtype of breast cancer with poor prognosis and high rates of relapse. The lack of actionable targets for TNBC has contributed to the high mortality rates of this disease, and new candidate molecules for potential manipulation are urgently required. Here, we show that macrophage‐stimulating protein (MSP) and its tyrosine kinase receptor, Recepteur d’origine nantais (RON), are potent drivers of cancer cell growth and tumor progression in a mouse model of TNBC driven by the loss of Trp53 and Brca1. After comparison of two genetically engineered mouse models of TNBC, we found that mammary tumors from K14‐Cre;Brca1 (F/F) ;Trp53 (F/F) (KB1P) mice exhibit high endogenous levels of MSP and RON expression. We show that MSP stimulates serine/threonine kinase 1 and extracellular regulated MAPK activation as well as cancer cell growth in cell lines derived from the two mouse models, while genetic and pharmacological inhibition of RON prevents these effects. Similarly, KB1P tumor progression in mice was robustly attenuated by treatment with a RON inhibitor with accompanied reduction in the proliferation marker, Ki‐67. Analysis of human gene expression data confirmed that the genes encoding MSP and RON are robustly expressed in human TNBC as well as other subsets of breast cancer. Our findings uncover a mouse model where MSP expression and RON expression are naturally increased, and they provide evidence that this receptor and its ligand are viable candidate molecules for targeted treatment of breast cancer.
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spelling pubmed-74007852020-08-06 The MSP‐RON axis stimulates cancer cell growth in models of triple negative breast cancer Millar, Rhona Kilbey, Anna Remak, Sarah‐Jane Severson, Tesa M. Dhayade, Sandeep Sandilands, Emma Foster, Kyla Bryant, David M. Blyth, Karen Coffelt, Seth B. Mol Oncol Research Articles Triple‐negative breast cancer (TNBC) is the most aggressive subtype of breast cancer with poor prognosis and high rates of relapse. The lack of actionable targets for TNBC has contributed to the high mortality rates of this disease, and new candidate molecules for potential manipulation are urgently required. Here, we show that macrophage‐stimulating protein (MSP) and its tyrosine kinase receptor, Recepteur d’origine nantais (RON), are potent drivers of cancer cell growth and tumor progression in a mouse model of TNBC driven by the loss of Trp53 and Brca1. After comparison of two genetically engineered mouse models of TNBC, we found that mammary tumors from K14‐Cre;Brca1 (F/F) ;Trp53 (F/F) (KB1P) mice exhibit high endogenous levels of MSP and RON expression. We show that MSP stimulates serine/threonine kinase 1 and extracellular regulated MAPK activation as well as cancer cell growth in cell lines derived from the two mouse models, while genetic and pharmacological inhibition of RON prevents these effects. Similarly, KB1P tumor progression in mice was robustly attenuated by treatment with a RON inhibitor with accompanied reduction in the proliferation marker, Ki‐67. Analysis of human gene expression data confirmed that the genes encoding MSP and RON are robustly expressed in human TNBC as well as other subsets of breast cancer. Our findings uncover a mouse model where MSP expression and RON expression are naturally increased, and they provide evidence that this receptor and its ligand are viable candidate molecules for targeted treatment of breast cancer. John Wiley and Sons Inc. 2020-06-17 2020-08 /pmc/articles/PMC7400785/ /pubmed/32484599 http://dx.doi.org/10.1002/1878-0261.12734 Text en © 2020 The Authors. Published by FEBS press John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Millar, Rhona
Kilbey, Anna
Remak, Sarah‐Jane
Severson, Tesa M.
Dhayade, Sandeep
Sandilands, Emma
Foster, Kyla
Bryant, David M.
Blyth, Karen
Coffelt, Seth B.
The MSP‐RON axis stimulates cancer cell growth in models of triple negative breast cancer
title The MSP‐RON axis stimulates cancer cell growth in models of triple negative breast cancer
title_full The MSP‐RON axis stimulates cancer cell growth in models of triple negative breast cancer
title_fullStr The MSP‐RON axis stimulates cancer cell growth in models of triple negative breast cancer
title_full_unstemmed The MSP‐RON axis stimulates cancer cell growth in models of triple negative breast cancer
title_short The MSP‐RON axis stimulates cancer cell growth in models of triple negative breast cancer
title_sort msp‐ron axis stimulates cancer cell growth in models of triple negative breast cancer
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7400785/
https://www.ncbi.nlm.nih.gov/pubmed/32484599
http://dx.doi.org/10.1002/1878-0261.12734
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