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Tumour exosome integrins determine organotropic metastasis
Ever since Stephen Paget’s 1889 hypothesis, metastatic organotropism has remained one of cancer’s greatest mysteries. Here we demonstrate that exosomes from mouse and human lung-, liver- and brain-tropic tumour cells fuse preferentially with resident cells at their predicted destination, namely lung...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
2015
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4788391/ https://www.ncbi.nlm.nih.gov/pubmed/26524530 http://dx.doi.org/10.1038/nature15756 |
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author | Hoshino, Ayuko Costa-Silva, Bruno Shen, Tang-Long Rodrigues, Goncalo Hashimoto, Ayako Mark, Milica Tesic Molina, Henrik Kohsaka, Shinji Di Giannatale, Angela Ceder, Sophia Singh, Swarnima Williams, Caitlin Soplop, Nadine Uryu, Kunihiro Pharmer, Lindsay King, Tari Bojmar, Linda Davies, Alexander E. Ararso, Yonathan Zhang, Tuo Zhang, Haiying Hernandez, Jonathan Weiss, Joshua M. Dumont-Cole, Vanessa D. Kramer, Kimberly Wexler, Leonard H. Narendran, Aru Schwartz, Gary K. Healey, John H. Sandstrom, Per Labori, Knut Jørgen Kure, Elin H. Grandgenett, Paul M. Hollingsworth, Michael A. de Sousa, Maria Kaur, Sukhwinder Jain, Maneesh Mallya, Kavita Batra, Surinder K. Jarnagin, William R. Brady, Mary S. Fodstad, Oystein Muller, Volkmar Pantel, Klaus Minn, Andy J. Bissell, Mina J. Garcia, Benjamin A. Kang, Yibin Rajasekhar, Vinagolu K. Ghajar, Cyrus M. Matei, Irina Peinado, Hector Bromberg, Jacqueline Lyden, David |
author_facet | Hoshino, Ayuko Costa-Silva, Bruno Shen, Tang-Long Rodrigues, Goncalo Hashimoto, Ayako Mark, Milica Tesic Molina, Henrik Kohsaka, Shinji Di Giannatale, Angela Ceder, Sophia Singh, Swarnima Williams, Caitlin Soplop, Nadine Uryu, Kunihiro Pharmer, Lindsay King, Tari Bojmar, Linda Davies, Alexander E. Ararso, Yonathan Zhang, Tuo Zhang, Haiying Hernandez, Jonathan Weiss, Joshua M. Dumont-Cole, Vanessa D. Kramer, Kimberly Wexler, Leonard H. Narendran, Aru Schwartz, Gary K. Healey, John H. Sandstrom, Per Labori, Knut Jørgen Kure, Elin H. Grandgenett, Paul M. Hollingsworth, Michael A. de Sousa, Maria Kaur, Sukhwinder Jain, Maneesh Mallya, Kavita Batra, Surinder K. Jarnagin, William R. Brady, Mary S. Fodstad, Oystein Muller, Volkmar Pantel, Klaus Minn, Andy J. Bissell, Mina J. Garcia, Benjamin A. Kang, Yibin Rajasekhar, Vinagolu K. Ghajar, Cyrus M. Matei, Irina Peinado, Hector Bromberg, Jacqueline Lyden, David |
author_sort | Hoshino, Ayuko |
collection | PubMed |
description | Ever since Stephen Paget’s 1889 hypothesis, metastatic organotropism has remained one of cancer’s greatest mysteries. Here we demonstrate that exosomes from mouse and human lung-, liver- and brain-tropic tumour cells fuse preferentially with resident cells at their predicted destination, namely lung fibroblasts and epithelial cells, liver Kupffer cells and brain endothelial cells. We show that tumour-derived exosomes uptaken by organ-specific cells prepare the pre-metastatic niche. Treatment with exosomes from lung-tropic models redirected the metastasis of bone-tropic tumour cells. Exosome proteomics revealed distinct integrin expression patterns, in which the exosomal integrins α(6)β(4) and α(6)β(1) were associated with lung metastasis, while exosomal integrin α(v)β(5) was linked to liver metastasis. Targeting the integrins α(6)β(4) and α(v)β(5) decreased exosome uptake, as well as lung and liver metastasis, respectively. We demonstrate that exosome integrin uptake by resident cells activates Src phosphorylation and pro-inflammatory S100 gene expression. Finally, our clinical data indicate that exosomal integrins could be used to predict organ-specific metastasis. |
format | Online Article Text |
id | pubmed-4788391 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2015 |
record_format | MEDLINE/PubMed |
spelling | pubmed-47883912016-05-18 Tumour exosome integrins determine organotropic metastasis Hoshino, Ayuko Costa-Silva, Bruno Shen, Tang-Long Rodrigues, Goncalo Hashimoto, Ayako Mark, Milica Tesic Molina, Henrik Kohsaka, Shinji Di Giannatale, Angela Ceder, Sophia Singh, Swarnima Williams, Caitlin Soplop, Nadine Uryu, Kunihiro Pharmer, Lindsay King, Tari Bojmar, Linda Davies, Alexander E. Ararso, Yonathan Zhang, Tuo Zhang, Haiying Hernandez, Jonathan Weiss, Joshua M. Dumont-Cole, Vanessa D. Kramer, Kimberly Wexler, Leonard H. Narendran, Aru Schwartz, Gary K. Healey, John H. Sandstrom, Per Labori, Knut Jørgen Kure, Elin H. Grandgenett, Paul M. Hollingsworth, Michael A. de Sousa, Maria Kaur, Sukhwinder Jain, Maneesh Mallya, Kavita Batra, Surinder K. Jarnagin, William R. Brady, Mary S. Fodstad, Oystein Muller, Volkmar Pantel, Klaus Minn, Andy J. Bissell, Mina J. Garcia, Benjamin A. Kang, Yibin Rajasekhar, Vinagolu K. Ghajar, Cyrus M. Matei, Irina Peinado, Hector Bromberg, Jacqueline Lyden, David Nature Article Ever since Stephen Paget’s 1889 hypothesis, metastatic organotropism has remained one of cancer’s greatest mysteries. Here we demonstrate that exosomes from mouse and human lung-, liver- and brain-tropic tumour cells fuse preferentially with resident cells at their predicted destination, namely lung fibroblasts and epithelial cells, liver Kupffer cells and brain endothelial cells. We show that tumour-derived exosomes uptaken by organ-specific cells prepare the pre-metastatic niche. Treatment with exosomes from lung-tropic models redirected the metastasis of bone-tropic tumour cells. Exosome proteomics revealed distinct integrin expression patterns, in which the exosomal integrins α(6)β(4) and α(6)β(1) were associated with lung metastasis, while exosomal integrin α(v)β(5) was linked to liver metastasis. Targeting the integrins α(6)β(4) and α(v)β(5) decreased exosome uptake, as well as lung and liver metastasis, respectively. We demonstrate that exosome integrin uptake by resident cells activates Src phosphorylation and pro-inflammatory S100 gene expression. Finally, our clinical data indicate that exosomal integrins could be used to predict organ-specific metastasis. 2015-10-28 2015-11-19 /pmc/articles/PMC4788391/ /pubmed/26524530 http://dx.doi.org/10.1038/nature15756 Text en Reprints and permissions information is available at www.nature.com/reprints |
spellingShingle | Article Hoshino, Ayuko Costa-Silva, Bruno Shen, Tang-Long Rodrigues, Goncalo Hashimoto, Ayako Mark, Milica Tesic Molina, Henrik Kohsaka, Shinji Di Giannatale, Angela Ceder, Sophia Singh, Swarnima Williams, Caitlin Soplop, Nadine Uryu, Kunihiro Pharmer, Lindsay King, Tari Bojmar, Linda Davies, Alexander E. Ararso, Yonathan Zhang, Tuo Zhang, Haiying Hernandez, Jonathan Weiss, Joshua M. Dumont-Cole, Vanessa D. Kramer, Kimberly Wexler, Leonard H. Narendran, Aru Schwartz, Gary K. Healey, John H. Sandstrom, Per Labori, Knut Jørgen Kure, Elin H. Grandgenett, Paul M. Hollingsworth, Michael A. de Sousa, Maria Kaur, Sukhwinder Jain, Maneesh Mallya, Kavita Batra, Surinder K. Jarnagin, William R. Brady, Mary S. Fodstad, Oystein Muller, Volkmar Pantel, Klaus Minn, Andy J. Bissell, Mina J. Garcia, Benjamin A. Kang, Yibin Rajasekhar, Vinagolu K. Ghajar, Cyrus M. Matei, Irina Peinado, Hector Bromberg, Jacqueline Lyden, David Tumour exosome integrins determine organotropic metastasis |
title | Tumour exosome integrins determine organotropic metastasis |
title_full | Tumour exosome integrins determine organotropic metastasis |
title_fullStr | Tumour exosome integrins determine organotropic metastasis |
title_full_unstemmed | Tumour exosome integrins determine organotropic metastasis |
title_short | Tumour exosome integrins determine organotropic metastasis |
title_sort | tumour exosome integrins determine organotropic metastasis |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4788391/ https://www.ncbi.nlm.nih.gov/pubmed/26524530 http://dx.doi.org/10.1038/nature15756 |
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