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Identification and Validation of ERK5 as a DNA Damage Modulating Drug Target in Glioblastoma
Natasha Carmell1, Ola Rominiyi1,2, Katie N Myers1
1Weston Park Cancer Centre, Department of Oncology & Metabolism, The University of Sheffield Medical School, Sheffield S10 2SJ, UK.
Abstract:
Brain tumours kill more children and adults under 40 than any other cancer, with approximately half of primary brain tumours being diagnosed as high-grade malignancies known as glioblastomas. Despite de-bulking surgery combined with chemo-/radiotherapy regimens, the mean survival for these patients is only around 15 months, with less than 10% surviving over 5 years. This dismal prognosis highlights the urgent need to develop novel agents to improve the treatment of these tumours. To address this need, we carried out a human kinome siRNA screen to identify potential drug targets that augment the effectiveness of temozolomide (TMZ)-the standard-of-care chemotherapeutic agent used to treat glioblastoma. From this we identified ERK5/MAPK7, which we subsequently validated using a range of siRNA and small molecule inhibitors within a panel of glioma cells. Mechanistically, we find that ERK5 promotes efficient repair of TMZ-induced DNA lesions to confer cell survival and clonogenic capacity. Finally, using several glioblastoma patient cohorts we provide target validation data for ERK5 as a novel drug target, revealing that heightened ERK5 expression at both the mRNA and protein level is associated with increased tumour grade and poorer patient survival. Collectively, these findings provide a foundation to develop clinically effective ERK5 targeting strategies in glioblastomas and establish much-needed enhancement of the therapeutic repertoire used to treat this currently incurable disease.
Insights
Researchers identified ERK5/MAPK7 as a key target to improve glioblastoma treatment. Inhibiting ERK5 may enhance chemotherapy effectiveness and patient survival for this aggressive brain cancer.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Glioblastomas are aggressive brain tumors with poor prognosis.
- Current treatments like surgery, chemotherapy, and radiotherapy offer limited survival benefits.
- Novel therapeutic targets are urgently needed to improve glioblastoma treatment outcomes.
Purpose of the Study:
- To identify novel drug targets that can enhance the efficacy of temozolomide (TMZ) in glioblastoma treatment.
- To investigate the role of ERK5/MAPK7 in glioblastoma cell survival and response to TMZ.
- To validate ERK5 as a potential therapeutic target in glioblastoma.
Main Methods:
- Human kinome siRNA screen to identify potential drug targets.
- Validation using siRNA and small molecule inhibitors in glioma cell lines.
- Analysis of glioblastoma patient cohorts to assess ERK5 expression and survival correlation.
Main Results:
- ERK5/MAPK7 was identified as a potential drug target.
- ERK5 promotes the repair of temozolomide-induced DNA damage, conferring cell survival.
- Elevated ERK5 expression correlates with higher tumor grade and poorer patient survival.
Conclusions:
- ERK5 plays a critical role in glioblastoma cell survival by facilitating DNA repair.
- ERK5 represents a promising novel drug target for glioblastoma therapy.
- Targeting ERK5 could enhance current treatment strategies and improve outcomes for glioblastoma patients.
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