Back to Search Start Over

Targeted inhibition of the methyltransferase SETD8 synergizes with the Wee1 inhibitor adavosertib in restraining glioblastoma growth

Authors :
Rosa Della Monica
Michela Buonaiuto
Mariella Cuomo
Cristina Pagano
Federica Trio
Davide Costabile
Giulia de Riso
Francesca Sveva Cicala
Maddalena Raia
Raduan Ahmed Franca
Marialaura Del Basso De Caro
Domenico Sorrentino
Giovanna Navarra
Laura Coppola
Lorella Tripodi
Lucio Pastore
Juergen Hench
Stephan Frank
Claudio Schonauer
Giuseppe Catapano
Maurizio Bifulco
Lorenzo Chiariotti
Roberta Visconti
Source :
Cell Death and Disease, Vol 14, Iss 9, Pp 1-13 (2023)
Publication Year :
2023
Publisher :
Nature Publishing Group, 2023.

Abstract

Abstract Despite intense research efforts, glioblastoma remains an incurable brain tumor with a dismal median survival time of 15 months. Thus, identifying new therapeutic targets is an urgent need. Here, we show that the lysine methyltransferase SETD8 is overexpressed in 50% of high-grade gliomas. The small molecule SETD8 inhibitor UNC0379, as well as siRNA-mediated inhibition of SETD8, blocked glioblastoma cell proliferation, by inducing DNA damage and activating cell cycle checkpoints. Specifically, in p53-proficient glioblastoma cells, SETD8 inhibition and DNA damage induced p21 accumulation and G1/S arrest whereas, in p53-deficient glioblastoma cells, DNA damage induced by SETD8 inhibition resulted in G2/M arrest mediated by Chk1 activation. Checkpoint abrogation, by the Wee1 kinase inhibitor adavosertib, induced glioblastoma cell lines and primary cells, DNA-damaged by UNC0379, to progress to mitosis where they died by mitotic catastrophe. Finally, UNC0379 and adavosertib synergized in restraining glioblastoma growth in a murine xenograft model, providing a strong rationale to further explore this novel pharmacological approach for adjuvant glioblastoma treatment.

Subjects

Subjects :
Cytology
QH573-671

Details

Language :
English
ISSN :
20414889
Volume :
14
Issue :
9
Database :
Directory of Open Access Journals
Journal :
Cell Death and Disease
Publication Type :
Academic Journal
Accession number :
edsdoj.b44f13ef57b24faa81bbd847d68a87ec
Document Type :
article
Full Text :
https://doi.org/10.1038/s41419-023-06167-3