Melanoma exosomes educate bone marrow progenitor cells toward a pro-metastatic phenotype through MET
Top Cited Papers
- 27 May 2012
- journal article
- research article
- Published by Springer Nature in Nature Medicine
- Vol. 18 (6), 883-891
- https://doi.org/10.1038/nm.2753
Abstract
Exosomes can transfer proteins and nucleic acids from one cell to another, altering the phenotype of the recipient cell. In the case of cancer, tumor-derived exosomes have been shown to promote tumor cell proliferation. Now, in a mouse model of melanoma, Peinado et al. report that exosomes derived from highly metastatic tumor cells can influence bone marrow cells, resulting in increased recruitment of provasculogenic bone marrow progenitors to sites of metastasis, increased primary tumor growth and metastatic spread. Tumor-derived exosomes are emerging mediators of tumorigenesis. We explored the function of melanoma-derived exosomes in the formation of primary tumors and metastases in mice and human subjects. Exosomes from highly metastatic melanomas increased the metastatic behavior of primary tumors by permanently 'educating' bone marrow progenitors through the receptor tyrosine kinase MET. Melanoma-derived exosomes also induced vascular leakiness at pre-metastatic sites and reprogrammed bone marrow progenitors toward a pro-vasculogenic phenotype that was positive for c-Kit, the receptor tyrosine kinase Tie2 and Met. Reducing Met expression in exosomes diminished the pro-metastatic behavior of bone marrow cells. Notably, MET expression was elevated in circulating CD45−C-KITlow/+TIE2+ bone marrow progenitors from individuals with metastatic melanoma. RAB1A, RAB5B, RAB7 and RAB27A, regulators of membrane trafficking and exosome formation, were highly expressed in melanoma cells. Rab27A RNA interference decreased exosome production, preventing bone marrow education and reducing, tumor growth and metastasis. In addition, we identified an exosome-specific melanoma signature with prognostic and therapeutic potential comprised of TYRP2, VLA-4, HSP70, an HSP90 isoform and the MET oncoprotein. Our data show that exosome production, transfer and education of bone marrow cells supports tumor growth and metastasis, has prognostic value and offers promise for new therapeutic directions in the metastatic process.Keywords
This publication has 59 references indexed in Scilit:
- Proinvasion Metastasis Drivers in Early-Stage Melanoma Are OncogenesCancer Cell, 2011
- Transcriptional control of melanoma metastasis: The importance of the tumor microenvironmentSeminars in Cancer Biology, 2010
- An Integrated Approach to Uncover Drivers of CancerCell, 2010
- Targeting the HGF/Met signalling pathway in cancerEuropean Journal Of Cancer, 2010
- Microvesicle entry into marrow cells mediates tissue-specific changes in mRNA by direct delivery of mRNA and induction of transcriptionExperimental Hematology, 2010
- Bone marrow-derived endothelial progenitor cells contribute to the angiogenic switch in tumor growth and metastatic progressionBiochimica et Biophysica Acta (BBA) - Reviews on Cancer, 2009
- Tumor-derived microvesicles modulate the establishment of metastatic melanoma in a phosphatidylserine-dependent mannerCancer Letters, 2009
- Induction of myeloid‐derived suppressor cells by tumor exosomesInternational Journal of Cancer, 2009
- Hypoxia-Induced Lysyl Oxidase Is a Critical Mediator of Bone Marrow Cell Recruitment to Form the Premetastatic NicheCancer Cell, 2009
- THE DISTRIBUTION OF SECONDARY GROWTHS IN CANCER OF THE BREAST.The Lancet, 1889