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A novel L1CAM isoform with angiogenic activity generated by NOVA2-mediated alternative splicing

Articolo
Data di Pubblicazione:
2019
Abstract:
The biological players involved in angiogenesis are only partially defined. Here, we report that endothelial cells (ECs) express a novel isoform of the cell-surface adhesion molecule L1CAM, termed L1-ΔTM. The splicing factor NOVA2, which binds directly to L1CAM pre-mRNA, is necessary and sufficient for the skipping of L1CAM transmembrane domain in ECs, leading to the release of soluble L1-ΔTM. The latter exerts high angiogenic function through both autocrine and paracrine activities. Mechanistically, L1-ΔTM-induced angiogenesis requires fibroblast growth factor receptor-1 signaling, implying a crosstalk between the two molecules. NOVA2 and L1-ΔTM are overexpressed in the vasculature of ovarian cancer, where L1-ΔTM levels correlate with tumor vascularization, supporting the involvement of NOVA2-mediated L1-ΔTM production in tumor angiogenesis. Finally, high NOVA2 expression is associated with poor outcome in ovarian cancer patients. Our results point to L1-ΔTM as a novel, EC-derived angiogenic factor which may represent a target for innovative antiangiogenic therapies.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
Angiogenesis; L1CAM; NOVA2; Ovarian Cancer; atermative splicing; cancer biology; cell biology; human; mouse
Elenco autori:
Angiolini, Francesca; Belloni, Elisa; Giordano, Marco; Campioni, Matteo; Forneris, Federico; Paola, Paronetto Maria; Lupia, Michela; Brandas, Chiara; Pradella, Davide; DI MATTEO, Anna; Giampietro, Costanza; Jodice, Giovanna; Luise, Chiara; Bertalot, Giovanni; Freddi, Stefano; Malinverno, Matteo; Irimia, Manuel; Moulton, Jon D; Summerton, James; Chiapparino, Antonella; Ghilardi, Carmen; Giavazzi, Raffaella; Nyqvist, Daniel; Gabellini, Davide; Dejana, Elisabetta; Cavallaro, Ugo; Ghigna, Claudia
Autori di Ateneo:
FORNERIS FEDERICO
Link alla scheda completa:
https://iris.unipv.it/handle/11571/1245886
Pubblicato in:
ELIFE
Journal
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URL

https://elifesciences.org/articles/44305
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