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Evolution of fibroblasts in the lung metastatic microenvironment is driven by stage-specific transcriptional plasticity

Mortality from breast cancer is almost exclusively a result of tumor metastasis, and lungs are one of the main metastatic sites. Cancer-associated fibroblasts are prominent players in the microenvironment of breast cancer. However, their role in the metastatic niche is largely unknown. In this study...

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Autores principales: Shani, Ophir, Raz, Yael, Monteran, Lea, Scharff, Ye'ela, Levi-Galibov, Oshrat, Megides, Or, Shacham, Hila, Cohen, Noam, Silverbush, Dana, Avivi, Camilla, Sharan, Roded, Madi, Asaf, Scherz-Shouval, Ruth, Barshack, Iris, Tsarfaty, Ilan, Erez, Neta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8257251/
https://www.ncbi.nlm.nih.gov/pubmed/34169837
http://dx.doi.org/10.7554/eLife.60745
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author Shani, Ophir
Raz, Yael
Monteran, Lea
Scharff, Ye'ela
Levi-Galibov, Oshrat
Megides, Or
Shacham, Hila
Cohen, Noam
Silverbush, Dana
Avivi, Camilla
Sharan, Roded
Madi, Asaf
Scherz-Shouval, Ruth
Barshack, Iris
Tsarfaty, Ilan
Erez, Neta
author_facet Shani, Ophir
Raz, Yael
Monteran, Lea
Scharff, Ye'ela
Levi-Galibov, Oshrat
Megides, Or
Shacham, Hila
Cohen, Noam
Silverbush, Dana
Avivi, Camilla
Sharan, Roded
Madi, Asaf
Scherz-Shouval, Ruth
Barshack, Iris
Tsarfaty, Ilan
Erez, Neta
author_sort Shani, Ophir
collection PubMed
description Mortality from breast cancer is almost exclusively a result of tumor metastasis, and lungs are one of the main metastatic sites. Cancer-associated fibroblasts are prominent players in the microenvironment of breast cancer. However, their role in the metastatic niche is largely unknown. In this study, we profiled the transcriptional co-evolution of lung fibroblasts isolated from transgenic mice at defined stage-specific time points of metastases formation. Employing multiple knowledge-based platforms of data analysis provided powerful insights on functional and temporal regulation of the transcriptome of fibroblasts. We demonstrate that fibroblasts in lung metastases are transcriptionally dynamic and plastic, and reveal stage-specific gene signatures that imply functional tasks, including extracellular matrix remodeling, stress response, and shaping the inflammatory microenvironment. Furthermore, we identified Myc as a central regulator of fibroblast rewiring and found that stromal upregulation of Myc transcriptional networks is associated with disease progression in human breast cancer.
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spelling pubmed-82572512021-07-07 Evolution of fibroblasts in the lung metastatic microenvironment is driven by stage-specific transcriptional plasticity Shani, Ophir Raz, Yael Monteran, Lea Scharff, Ye'ela Levi-Galibov, Oshrat Megides, Or Shacham, Hila Cohen, Noam Silverbush, Dana Avivi, Camilla Sharan, Roded Madi, Asaf Scherz-Shouval, Ruth Barshack, Iris Tsarfaty, Ilan Erez, Neta eLife Cancer Biology Mortality from breast cancer is almost exclusively a result of tumor metastasis, and lungs are one of the main metastatic sites. Cancer-associated fibroblasts are prominent players in the microenvironment of breast cancer. However, their role in the metastatic niche is largely unknown. In this study, we profiled the transcriptional co-evolution of lung fibroblasts isolated from transgenic mice at defined stage-specific time points of metastases formation. Employing multiple knowledge-based platforms of data analysis provided powerful insights on functional and temporal regulation of the transcriptome of fibroblasts. We demonstrate that fibroblasts in lung metastases are transcriptionally dynamic and plastic, and reveal stage-specific gene signatures that imply functional tasks, including extracellular matrix remodeling, stress response, and shaping the inflammatory microenvironment. Furthermore, we identified Myc as a central regulator of fibroblast rewiring and found that stromal upregulation of Myc transcriptional networks is associated with disease progression in human breast cancer. eLife Sciences Publications, Ltd 2021-06-25 /pmc/articles/PMC8257251/ /pubmed/34169837 http://dx.doi.org/10.7554/eLife.60745 Text en © 2021, Shani et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Cancer Biology
Shani, Ophir
Raz, Yael
Monteran, Lea
Scharff, Ye'ela
Levi-Galibov, Oshrat
Megides, Or
Shacham, Hila
Cohen, Noam
Silverbush, Dana
Avivi, Camilla
Sharan, Roded
Madi, Asaf
Scherz-Shouval, Ruth
Barshack, Iris
Tsarfaty, Ilan
Erez, Neta
Evolution of fibroblasts in the lung metastatic microenvironment is driven by stage-specific transcriptional plasticity
title Evolution of fibroblasts in the lung metastatic microenvironment is driven by stage-specific transcriptional plasticity
title_full Evolution of fibroblasts in the lung metastatic microenvironment is driven by stage-specific transcriptional plasticity
title_fullStr Evolution of fibroblasts in the lung metastatic microenvironment is driven by stage-specific transcriptional plasticity
title_full_unstemmed Evolution of fibroblasts in the lung metastatic microenvironment is driven by stage-specific transcriptional plasticity
title_short Evolution of fibroblasts in the lung metastatic microenvironment is driven by stage-specific transcriptional plasticity
title_sort evolution of fibroblasts in the lung metastatic microenvironment is driven by stage-specific transcriptional plasticity
topic Cancer Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8257251/
https://www.ncbi.nlm.nih.gov/pubmed/34169837
http://dx.doi.org/10.7554/eLife.60745
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