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  1. Pubblicazioni

The anti-apoptotic BAG3 protein is involved in BRAF inhibitor resistance in melanoma cells

Articolo
Data di Pubblicazione:
2017
Citazione:
The anti-apoptotic BAG3 protein is involved in BRAF inhibitor resistance in melanoma cells / Guerriero, L.; Palmieri, G.; De Marco, M.; Cossu, A.; Remondelli, P.; Capunzo, M.; Turco, M. C.; Rosati, A.. - In: ONCOTARGET. - ISSN 1949-2553. - 8:46(2017), pp. 80393-80404. [10.18632/oncotarget.18902]
Abstract:
BAG3 protein, a member of BAG family of co-chaperones, has a pro-survival role in several tumour types. BAG3 anti-apoptotic properties rely on its characteristic to bind several intracellular partners, thereby modulating crucial events such as apoptosis, differentiation, cell motility, and autophagy. In human melanomas, BAG3 positivity is correlated with the aggressiveness of the tumour cells and can sustain IKK-γ levels, allowing a sustained activation of NF-κB. Furthermore, BAG3 is able to modulate BRAFV600E levels and activity in thyroid carcinomas. BRAFV600E is the most frequent mutation detected in malignant melanomas and is targeted by Vemurafenib, a specific inhibitor found to be effective in the treatment of advanced melanoma. However, patients with BRAF-mutated melanoma may result insensitive ab initio or, mostly, develop acquired resistance to the treatment with this molecule. Here we show that BAG3 down-modulation interferes with BRAF levels in melanoma cells and sensitizes them to Vemurafenib treatment. Furthermore, the down-modulation of BAG3 protein in an in vitro model of acquired resistance to Vemurafenib can induce sensitization to the BRAFV600E specific inhibition by interfering with BRAF pathway through reduction of ERK phosphorylation, but also on parallel survival pathways. Future studies on BAG3 molecular interactions with key proteins responsible of acquired BRAF inhibitor resistance may represent a promising field for novel multi-drugs treatment design. Copyright: Guerriero et al.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
BAG3; BRAF; Melanoma; Resistance; Vemurafenib
Elenco autori:
Guerriero, L.; Palmieri, G.; De Marco, M.; Cossu, A.; Remondelli, P.; Capunzo, M.; Turco, M. C.; Rosati, A.
Autori di Ateneo:
COSSU Antonio Giuseppe Maria
PALMIERI Giuseppe
Link alla scheda completa:
https://iris.uniss.it/handle/11388/241215
Pubblicato in:
ONCOTARGET
Journal
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