Back to Search Start Over

Targeting GLI1 and GLI2 with small molecule inhibitors to suppress GLI-dependent transcription and tumor growth

Authors :
Luisa Maresca
Enrica Crivaro
Francesca Migliorini
Giulia Anichini
Alessandro Giammona
Sara Pepe
Federica Poggialini
Chiara Vagaggini
Giuseppe Giannini
Serena Sestini
Lorenzo Borgognoni
Andrea Lapucci
Elena Dreassi
Maurizio Taddei
Fabrizio Manetti
Elena Petricci
Barbara Stecca
Source :
Pharmacological Research, Vol 195, Iss , Pp 106858- (2023)
Publication Year :
2023
Publisher :
Elsevier, 2023.

Abstract

Aberrant activation of Hedgehog (HH) signaling in cancer is the result of genetic alterations of upstream pathway components (canonical) or other oncogenic mechanisms (noncanonical), that ultimately concur to activate the zinc-finger transcription factors GLI1 and GLI2. Therefore, inhibition of GLI activity is a good therapeutic option to suppress both canonical and noncanonical activation of the HH pathway. However, only a few GLI inhibitors are available, and none of them have the profile required for clinical development due to poor metabolic stability and aqueous solubility, and high hydrophobicity. Two promising quinoline inhibitors of GLI were selected by virtual screening and subjected to hit-to-lead optimization, thus leading to the identification of the 4-methoxy-8-hydroxyquinoline derivative JC19. This molecule impaired GLI1 and GLI2 activities in several cellular models interfering with the binding of GLI1 and GLI2 to DNA. JC19 suppressed cancer cell proliferation by enhancing apoptosis, inducing a strong anti-tumor response in several cancer cell lines in vitro. Specificity towards GLI1 and GLI2 was demonstrated by lower activity of JC19 in GLI1- or GLI2-depleted cancer cells. JC19 showed excellent metabolic stability and high passive permeability. Notably, JC19 inhibited GLI1-dependent melanoma xenograft growth in vivo, with no evidence of toxic effects in mice. These results highlight the potential of JC19 as a novel anti-cancer agent targeting GLI1 and GLI2.

Details

Language :
English
ISSN :
10961186
Volume :
195
Issue :
106858-
Database :
Directory of Open Access Journals
Journal :
Pharmacological Research
Publication Type :
Academic Journal
Accession number :
edsdoj.3edd0903f8c04391913aff178e1c0782
Document Type :
article
Full Text :
https://doi.org/10.1016/j.phrs.2023.106858