bioRxiv · 10.1101/661660
Targeting destabilized DNA G-quadruplexes and aberrant splicing in drug-resistant glioblastoma
Abstract
Temozolomide (TMZ) is a chemotherapeutic agent that has been the first-line standard of care for the aggressive brain cancer glioblastoma (GBM) since 2005. Though initially beneficial, TMZ- resistance is universal and second-line interventions are an unmet clinical need. Here we took advantage the mechanism of action of TMZ to target guanines (G) and investigated G-rich g- quadruplex (G4) and splice site changes that occur upon TMZ-resistance. We report TMZ-resistant GBM has guanine mutations that disrupt the G-rich DNA G4s and splice sites that lead to deregulated alternative splicing. These alterations create vulnerabilities, which are selectively targeted by either the G4 stabilizing drug TMPyP4 or a novel splicing kinase inhibitor of cdc2- like kinase. Finally, we show that the G4 and RNA-binding protein EWSR1 aggregates in the cytoplasm in TMZ-resistant GBM cells and patient samples. Together, our findings provide insight into targetable vulnerabilities of TMZ-resistant GBM and present cytoplasmic EWSR1 as a putative biomarker. TeaserTargeting temozolomide mutations in drug resistant glioma via g-quadruplex and splicing modulators with a putative biomarker.
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Tiek, D. M., Razaghi, R., Jin, L., Sadowski, N., Alamillo-Ferrer, C., Hogg, J. R., Haddad, B. R., Drewry, D. H., Wells, C. I., Pickett, J. E., Zuercher, W. J., Timp, W., Riggins, R. B.. 2019-06-05. Targeting destabilized DNA G-quadruplexes and aberrant splicing in drug-resistant glioblastoma. https://doi.org/10.1101/661660
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