Most men diagnosed with prostate cancer will have an indolent and curable disease, whereas approximately 15% of these patients will rapidly progress to a castrate-resistant and metastatic stage with high morbidity and mortality. Therefore, the identification of molecular signature(s) that detect men at risk of progressing disease remains a pressing and still unmet need for these patients. Here, we used an integrated discovery platform combining prostate cancer cell lines, a Transgenic Adenocarcinoma of the Mouse Prostate (TRAMP) model and clinically-annotated human tissue samples to identify loss of expression of microRNA-34b as consistently associated with prostate cancer relapse. Mechanistically, this was associated with epigenetics silencing of the MIR34B/C locus and increased DNA copy number loss, selectively in androgen-dependent prostate cancer. In turn, loss of miR-34b resulted in downstream deregulation and overexpression of the "stemness" marker, Sox2. These findings identify loss of miR-34b as a robust biomarker for prostate cancer progression in androgen-sensitive tumors, and anticipate a potential role of progenitor/stem cell signaling in this stage of disease. Copyright:

Forno, I., Ferrero, S., Russo, M. V., Gazzano, G., Giangiobbe, S., Montanari, E., Del Nero, A., Rocco, B. M. C., Albo, G., Languino, L. R., Altieri, D. C., Vaira, V., Bosari, S., Deregulation of MIR-34b/Sox2 predicts prostate cancer progression, <<PLOS ONE>>, 2015; 10 (6): N/A-N/A. [doi:10.1371/journal.pone.0130060] [https://hdl.handle.net/10807/345536]

Deregulation of MIR-34b/Sox2 predicts prostate cancer progression

Rocco, Bernardo Maria Cesare;
2015

Abstract

Most men diagnosed with prostate cancer will have an indolent and curable disease, whereas approximately 15% of these patients will rapidly progress to a castrate-resistant and metastatic stage with high morbidity and mortality. Therefore, the identification of molecular signature(s) that detect men at risk of progressing disease remains a pressing and still unmet need for these patients. Here, we used an integrated discovery platform combining prostate cancer cell lines, a Transgenic Adenocarcinoma of the Mouse Prostate (TRAMP) model and clinically-annotated human tissue samples to identify loss of expression of microRNA-34b as consistently associated with prostate cancer relapse. Mechanistically, this was associated with epigenetics silencing of the MIR34B/C locus and increased DNA copy number loss, selectively in androgen-dependent prostate cancer. In turn, loss of miR-34b resulted in downstream deregulation and overexpression of the "stemness" marker, Sox2. These findings identify loss of miR-34b as a robust biomarker for prostate cancer progression in androgen-sensitive tumors, and anticipate a potential role of progenitor/stem cell signaling in this stage of disease. Copyright:
2015
Inglese
Forno, I., Ferrero, S., Russo, M. V., Gazzano, G., Giangiobbe, S., Montanari, E., Del Nero, A., Rocco, B. M. C., Albo, G., Languino, L. R., Altieri, D. C., Vaira, V., Bosari, S., Deregulation of MIR-34b/Sox2 predicts prostate cancer progression, <<PLOS ONE>>, 2015; 10 (6): N/A-N/A. [doi:10.1371/journal.pone.0130060] [https://hdl.handle.net/10807/345536]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10807/345536
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