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Tumour exosome integrins determine organotropic metastasis

Authors :
Aru Narendran
Mary S. Brady
Haiying Zhang
Swarnima Singh
Mina J. Bissell
Joshua Mitchell Weiss
Angela Di Giannatale
Linda Bojmar
Maria de Sousa
Gonçalo Rodrigues
Volkmar Müller
Kavita Mallya
Gary K. Schwartz
Vinagolu K. Rajasekhar
Henrik Molina
Sukwinder Kaur
Michael A. Hollingsworth
Per Sandström
Alexander E. Davies
Shinji Kohsaka
Kimberly Kramer
Nadine Soplop
Andy J. Minn
Irina Matei
Lindsay A. Pharmer
Sophia Ceder
David Lyden
Benjamin A. Garcia
Jacqueline Bromberg
Tang-Long Shen
Elin H. Kure
Cyrus M. Ghajar
Héctor Peinado
Ayako Hashimoto
Knut Jørgen Labori
Caitlin Williams
William R. Jarnagin
Jonathan M. Hernandez
Vanessa D. Dumont-Cole
John H. Healey
Øystein Fodstad
Ayuko Hoshino
Yibin Kang
Yonathan Ararso
Klaus Pantel
Tari A. King
Tuo Zhang
Milica Tesic Mark
Leonard H. Wexler
Surinder K. Batra
Maneesh Jain
Paul M. Grandgenett
Bruno Costa-Silva
Kunihiro Uryu
Source :
Nature, vol 527, iss 7578, Nature, Hoshino, A; Costa-Silva, B; Shen, TL; Rodrigues, G; Hashimoto, A; Tesic Mark, M; et al.(2015). Tumour exosome integrins determine organotropic metastasis. Nature, 527(7578), 329-335. doi: 10.1038/nature15756. Lawrence Berkeley National Laboratory: Retrieved from: http://www.escholarship.org/uc/item/60s4z9wm
Publication Year :
2015
Publisher :
eScholarship, University of California, 2015.

Abstract

© 2015 Macmillan Publishers Limited. All rights reserved. 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 α6β4 and α6β1 were associated with lung metastasis, while exosomal integrin αvβ5 was linked to liver metastasis. Targeting the integrins α6β4 and αvβ5 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.

Details

Database :
OpenAIRE
Journal :
Nature, vol 527, iss 7578, Nature, Hoshino, A; Costa-Silva, B; Shen, TL; Rodrigues, G; Hashimoto, A; Tesic Mark, M; et al.(2015). Tumour exosome integrins determine organotropic metastasis. Nature, 527(7578), 329-335. doi: 10.1038/nature15756. Lawrence Berkeley National Laboratory: Retrieved from: http://www.escholarship.org/uc/item/60s4z9wm
Accession number :
edsair.doi.dedup.....8408ae12ab5df6d9b94376be7d65dc61
Full Text :
https://doi.org/10.1038/nature15756.