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The genomic landscape of metastasis in treatment-naïve breast cancer models

Metastasis remains the principle cause of mortality for breast cancer and presents a critical challenge because secondary lesions are often refractory to conventional treatments. While specific genetic alterations are tightly linked to primary tumor development and progression, the role of genetic a...

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Autores principales: Ross, Christina, Szczepanek, Karol, Lee, Maxwell, Yang, Howard, Qiu, Tinghu, Sanford, Jack D., Hunter, Kent
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7282675/
https://www.ncbi.nlm.nih.gov/pubmed/32463822
http://dx.doi.org/10.1371/journal.pgen.1008743
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author Ross, Christina
Szczepanek, Karol
Lee, Maxwell
Yang, Howard
Qiu, Tinghu
Sanford, Jack D.
Hunter, Kent
author_facet Ross, Christina
Szczepanek, Karol
Lee, Maxwell
Yang, Howard
Qiu, Tinghu
Sanford, Jack D.
Hunter, Kent
author_sort Ross, Christina
collection PubMed
description Metastasis remains the principle cause of mortality for breast cancer and presents a critical challenge because secondary lesions are often refractory to conventional treatments. While specific genetic alterations are tightly linked to primary tumor development and progression, the role of genetic alteration in the metastatic process is not well-understood. The theory of tumor evolution postulated by Peter Nowell in 1976 has yet to be proven in the context of metastasis. Therefore, in order to investigate how somatic evolution contributes to breast cancer metastasis, we performed exome, whole genome, and RNA sequencing of matched metastatic and primary tumors from pre-clinical mouse models of breast cancer. Here we show that in a treatment-naïve setting, recurrent single nucleotide variants and copy number variation, but not gene fusion events, play key metastasis-driving roles in breast cancer. For instance, we identified recurrent mutations in Kras, a known driver of colorectal and lung tumorigenesis that has not been previously implicated in breast cancer metastasis. However, in a set of in vivo proof-of-concept experiments we show that the Kras G12D mutation is sufficient to significantly promote metastasis using three syngeneic allograft models. The work herein confirms the existence of metastasis-driving mutations and presents a novel framework to identify actionable metastasis-targeted therapies.
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spelling pubmed-72826752020-06-17 The genomic landscape of metastasis in treatment-naïve breast cancer models Ross, Christina Szczepanek, Karol Lee, Maxwell Yang, Howard Qiu, Tinghu Sanford, Jack D. Hunter, Kent PLoS Genet Research Article Metastasis remains the principle cause of mortality for breast cancer and presents a critical challenge because secondary lesions are often refractory to conventional treatments. While specific genetic alterations are tightly linked to primary tumor development and progression, the role of genetic alteration in the metastatic process is not well-understood. The theory of tumor evolution postulated by Peter Nowell in 1976 has yet to be proven in the context of metastasis. Therefore, in order to investigate how somatic evolution contributes to breast cancer metastasis, we performed exome, whole genome, and RNA sequencing of matched metastatic and primary tumors from pre-clinical mouse models of breast cancer. Here we show that in a treatment-naïve setting, recurrent single nucleotide variants and copy number variation, but not gene fusion events, play key metastasis-driving roles in breast cancer. For instance, we identified recurrent mutations in Kras, a known driver of colorectal and lung tumorigenesis that has not been previously implicated in breast cancer metastasis. However, in a set of in vivo proof-of-concept experiments we show that the Kras G12D mutation is sufficient to significantly promote metastasis using three syngeneic allograft models. The work herein confirms the existence of metastasis-driving mutations and presents a novel framework to identify actionable metastasis-targeted therapies. Public Library of Science 2020-05-28 /pmc/articles/PMC7282675/ /pubmed/32463822 http://dx.doi.org/10.1371/journal.pgen.1008743 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Ross, Christina
Szczepanek, Karol
Lee, Maxwell
Yang, Howard
Qiu, Tinghu
Sanford, Jack D.
Hunter, Kent
The genomic landscape of metastasis in treatment-naïve breast cancer models
title The genomic landscape of metastasis in treatment-naïve breast cancer models
title_full The genomic landscape of metastasis in treatment-naïve breast cancer models
title_fullStr The genomic landscape of metastasis in treatment-naïve breast cancer models
title_full_unstemmed The genomic landscape of metastasis in treatment-naïve breast cancer models
title_short The genomic landscape of metastasis in treatment-naïve breast cancer models
title_sort genomic landscape of metastasis in treatment-naïve breast cancer models
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7282675/
https://www.ncbi.nlm.nih.gov/pubmed/32463822
http://dx.doi.org/10.1371/journal.pgen.1008743
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