Oncogenic H-Ras reprograms madin-darby canine kidney (MDCK) cell-derived exosomal proteins following epithelial-mesenchymal transition

[thumbnail of 1-s2.0-S1535947620325287-main.pdf]
Preview
1-s2.0-S1535947620325287-main.pdf - Published Version (784kB) | Preview
Available under license: Creative Commons Attribution

Tauro, Bow J, Mathias, Rommel A, Greening, David W ORCID: 0000-0001-7516-485X, Gopal, Shashi K, Ji, Hong, Kapp, Eugene A, Coleman, Bradley M, Hill, Andrew F ORCID: 0000-0001-5581-2354, Kusebauch, Ulrike, Hallows, Janice L, Shteynberg, David, Moritz, Robert L, Zhu, Hong-Jian and Simpson, Richard J (2013) Oncogenic H-Ras reprograms madin-darby canine kidney (MDCK) cell-derived exosomal proteins following epithelial-mesenchymal transition. Molecular and Cellular Proteomics, 12 (8). pp. 2148-2159. ISSN 1535-9476

Abstract

Epithelial-mesenchymal transition (EMT) is a highly conserved morphogenic process defined by the loss of epithelial characteristics and the acquisition of a mesenchymal phenotype. EMT is associated with increased aggressiveness, invasiveness, and metastatic potential in carcinoma cells. To assess the contribution of extracellular vesicles following EMT, we conducted a proteomic analysis of exosomes released from Madin-Darby canine kidney (MDCK) cells, and MDCK cells transformed with oncogenic H-Ras (21D1 cells). Exosomes are 40-100 nm membranous vesicles originating from the inward budding of late endosomes and multivesicular bodies and are released from cells on fusion of multivesicular bodies with the plasma membrane. Exosomes from MDCK cells (MDCK-Exos) and 21D1 cells (21D1-Exos) were purified from cell culture media using density gradient centrifugation (OptiPrep™), and protein content identified by GeLCMS/ MS proteomic profiling. Both MDCK- and 21D1-Exos populations were morphologically similar by cryo-electron microscopy and contained stereotypical exosome marker proteins such as TSG101, Alix, and CD63. In this study we show that the expression levels of typical EMT hallmark proteins seen in whole cells correlate with those observed in MDCK- and 21D1-Exos, i.e. reduction of characteristic inhibitor of angiogenesis, thrombospondin-1, and epithelial markers E-cadherin, and EpCAM, with a concomitant up-regulation of mesenchymal makers such as vimentin. Further, we reveal that 21D1-Exos are enriched with several proteases (e.g. MMP-1, -14, -19, ADAM-10, and ADAMTS1), and integrins (e.g. ITGB1, ITGA3, and ITGA6) that have been recently implicated in regulating the tumor microenvironment to promote metastatic progression. A salient finding of this study was the unique presence of key transcriptional regulators (e.g. the master transcriptional regulator YBX1) and core splicing complex components (e.g. SF3B1, SF3B3, and SFRS1) in mesenchymal 21D1-Exos. Taken together, our findings reveal that exosomes from Ras-transformed MDCK cells are reprogrammed with factors which may be capable of inducing EMT in recipient cells.

Dimensions Badge

Altmetric Badge

Item type Article
URI https://vuir.vu.edu.au/id/eprint/45550
DOI 10.1074/mcp.M112.027086
Official URL https://www.sciencedirect.com/science/article/pii/...
Subjects Current > FOR (2020) Classification > 3207 Medical microbiology
Current > Division/Research > Chancellery
Keywords Epithelial-mesenchymal transition, EMT, carcinoma, plasma membrane, extracellular vesicles
Citations in Scopus 150 - View on Scopus
Download/View statistics View download statistics for this item

Search Google Scholar

Repository staff login