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Endoglin and MMP14 contribute to Ewing sarcoma spreading by modulation of cell-matrix interactions
- Source :
- Puerto-Camacho, P, Díaz-Martín, J, Olmedo-Pelayo, J, Bolado-Carrancio, A, Salguero-Aranda, C, Jordán-Pérez, C, Esteban-Medina, M, Álamo-Álvarez, I, Delgado-Bellido, D, Lobo-Selma, L, Dopazo, J, Sastre, A, Alonso, J, Grünewald, T G P, Bernabeu, C, Byron, A, Brunton, V G, Amaral, A T & de Álava, E 2022, ' Endoglin and MMP14 contribute to Ewing sarcoma spreading by modulation of cell-matrix interactions ', International Journal of Molecular Sciences, vol. 23, no. 15, 8657 . https://doi.org/10.3390/ijms23158657, International Journal of Molecular Sciences; Volume 23; Issue 15; Pages: 8657, Puerto-camacho, P, Olmedo-Pelayo, J, Bolado Carrancio, A, Salguero-aranda, C, Jordan-perez, C, Esteban-medina, M, Alamo-alvarez, I, Delgado-Bellido, D, Lobo-Selma, L, Dopazo, J, Sastre, A, Alonso-García, J, Grünewald, T G P, Bernabeu, C, Byron, A, Brunton, V G, Diaz-Martin, J, Amaral, A T & De Álava, E 2022, ' Endoglin and MMP14 contribute to Ewing sarcoma spreading by modulation of cell-matrix interactions ', Molecular Oncology . https://doi.org/10.3390/ijms23158657
- Publication Year :
- 2022
-
Abstract
- Endoglin (ENG) is a mesenchymal stem cell (MSC) marker typically expressed by active endothelium. This transmembrane glycoprotein is shed by matrix metalloproteinase 14 (MMP14). Our previous work demonstrated potent preclinical activity of first-in-class anti-ENG antibody-drug conjugates as a nascent strategy to eradicate Ewing sarcoma (ES), a devastating rare bone/soft tissue cancer with a putative MSC origin. We also defined a correlation between ENG and MMP14 expression in ES. Herein, we show that ENG expression is significantly associated with a dismal prognosis in a large cohort of ES patients. Moreover, both ENG/MMP14 are frequently expressed in primary ES tumors and metastasis. To deepen in their functional relevance in ES, we conducted transcriptomic and proteomic profiling of in vitro ES models that unveiled a key role of ENG and MMP14 in cell mechano-transduction. Migration and adhesion assays confirmed that loss of ENG disrupts actin filament assembly and filopodia formation, with a concomitant effect on cell spreading. Furthermore, we observed that ENG regulates cell-matrix interaction through activation of focal adhesion signaling and protein kinase C expression. In turn, loss of MMP14 contributed to a more adhesive phenotype of ES cells by modulating the transcriptional extracellular matrix dynamics. Overall, these results suggest that ENG and MMP14 exert a significant role in mediating correct spreading machinery of ES cells, impacting the aggressiveness of the disease.<br />E.A.’s laboratory is supported by ISCIII-FEDER (PI20/00003), CIBERONC (CB16/12/00361), PAIDI-Junta de Andalucía (P18-RT-735), Fundación CRIS Contra el Cáncer, Asociación Candela Riera and Asociación Pablo Ugarte. A.T.A. is supported by Juan de la Cierva Incorporación fellowship (IJC-2018-036767-I); P.P.-C. is sponsored by the Fundación María García Estrada. J.O.-P is supported by Ph.D. Grant Plan Propio from the University of Seville. J.D.-M is supported by CIBERONC (CB16/12/00361). C.S.-A. is supported by the European Social Fund and the Junta de Andalucía (Talento Doctores 2020, DOC_01473). This work was supported by grants from the Consejería de Salud (Junta de Andalucía, grants No PI-0036-2017, PI-0040-2017, and PI-0061-2020) awarded to J.D.-M, A.T.A. and C. S.-A., respectively. This work was also supported by the GEIS-Fundación Mari Paz Jiménez Casado (IV beca trienal) granted to J.D.-M, the 13ª GEIS-Beca Buesa granted to A.T.A. and CRIS (Cancer Research Innovation Spain) granted to J.D.-M and E.A. The laboratory of T.G.P.G. is supported by the Barbara and Wilfried Mohr Foundation. The lab of J.A. is supported by the Instituto de Salud Carlos III (ISCIII), grant number PI20CIII/00020; Asociación Pablo Ugarte, grant numbers TRPV205/18, TPI-M 1149/13; Asociación Candela Riera; Asociación Todos Somos Iván & Fundación Sonrisa de Alex, grant reference: TVP333-19.
- Subjects :
- Proteomics
Organic Chemistry
Endoglin/genetics
Endoglin
Bone Neoplasms
Mechano-transduction
General Medicine
Sarcoma, Ewing
Extracellular matrix
Bone Neoplasms/genetics
Sarcoma, Ewing/pathology
Ewing sarcoma
endoglin
mechano-transduction
extracellular matrix
Catalysis
Computer Science Applications
Inorganic Chemistry
Matrix Metalloproteinase 14
Matrix Metalloproteinase 14/genetics
Humans
Receptors, Growth Factor
Physical and Theoretical Chemistry
Molecular Biology
Spectroscopy
Signal Transduction
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- Puerto-Camacho, P, Díaz-Martín, J, Olmedo-Pelayo, J, Bolado-Carrancio, A, Salguero-Aranda, C, Jordán-Pérez, C, Esteban-Medina, M, Álamo-Álvarez, I, Delgado-Bellido, D, Lobo-Selma, L, Dopazo, J, Sastre, A, Alonso, J, Grünewald, T G P, Bernabeu, C, Byron, A, Brunton, V G, Amaral, A T & de Álava, E 2022, ' Endoglin and MMP14 contribute to Ewing sarcoma spreading by modulation of cell-matrix interactions ', International Journal of Molecular Sciences, vol. 23, no. 15, 8657 . https://doi.org/10.3390/ijms23158657, International Journal of Molecular Sciences; Volume 23; Issue 15; Pages: 8657, Puerto-camacho, P, Olmedo-Pelayo, J, Bolado Carrancio, A, Salguero-aranda, C, Jordan-perez, C, Esteban-medina, M, Alamo-alvarez, I, Delgado-Bellido, D, Lobo-Selma, L, Dopazo, J, Sastre, A, Alonso-García, J, Grünewald, T G P, Bernabeu, C, Byron, A, Brunton, V G, Diaz-Martin, J, Amaral, A T & De Álava, E 2022, ' Endoglin and MMP14 contribute to Ewing sarcoma spreading by modulation of cell-matrix interactions ', Molecular Oncology . https://doi.org/10.3390/ijms23158657
- Accession number :
- edsair.doi.dedup.....1b14f3fdd59e619a8e554921049ba6d3
- Full Text :
- https://doi.org/10.3390/ijms23158657