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Drug Resistance in Medulloblastoma Is Driven by YB-1, ABCB1 and a Seven-Gene Drug Signature
Louisa Taylor1,2, Philippa K Wade1, James E C Johnson1
1Children's Brain Tumour Research Centre, School of Medicine, University of Nottingham Biodiscovery Institute, University of Nottingham, University Park, Nottingham NG7 2RD, UK.
Abstract:
Therapy resistance represents an unmet challenge in the treatment of medulloblastoma. Accordingly, the identification of targets that mark drug-resistant cell populations, or drive the proliferation of resistant cells, may improve treatment strategies. To address this, we undertook a targeted approach focused on the multi-functional transcription factor YB-1. Genetic knockdown of YB-1 in Group 3 medulloblastoma cell lines diminished cell invasion in 3D in vitro assays and increased sensitivity to standard-of-care chemotherapeutic vincristine and anti-cancer agents panobinostat and JQ1. For vincristine, this occurred in part by YB-1-mediated transcriptional regulation of multi-drug resistance gene ABCB1, as determined by chromatin immunoprecipitation. Whole transcriptome sequencing of YB-1 knockdown cells identified a role for YB-1 in the regulation of tumourigenic processes, including lipid metabolism, cell death and survival and MYC and mTOR pathways. Stable cisplatin- and vincristine-tolerant Group 3 and SHH cell lines were generated to identify additional mechanisms driving resistance to standard-of-care medulloblastoma therapy. Next-generation sequencing revealed a vastly different transcriptomic landscape following chronic drug exposure, including a drug-tolerant seven-gene expression signature, common to all sequenced drug-tolerant cell lines, representing therapeutically targetable genes implicated in the acquisition of drug tolerance. Our findings provide significant insight into mechanisms and genes underlying therapy resistance in medulloblastoma.
Insights
Targeting transcription factor YB-1 may overcome medulloblastoma therapy resistance. YB-1 knockdown sensitizes cells to chemotherapy and reveals new drug targets for resistant medulloblastoma.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Therapy resistance is a major challenge in medulloblastoma treatment.
- Identifying targets that drive resistance is crucial for improving treatment strategies.
Purpose of the Study:
- To investigate the role of the transcription factor YB-1 in medulloblastoma therapy resistance.
- To identify novel therapeutic targets for drug-resistant medulloblastoma.
Main Methods:
- Genetic knockdown of YB-1 in medulloblastoma cell lines.
- 3D in vitro invasion assays.
- Chromatin immunoprecipitation and whole transcriptome sequencing.
- Generation and sequencing of drug-tolerant medulloblastoma cell lines.
Main Results:
- YB-1 knockdown reduced cell invasion and increased sensitivity to vincristine, panobinostat, and JQ1.
- YB-1 regulates the multidrug resistance gene ABCB1.
- YB-1 influences tumor-promoting pathways including lipid metabolism, cell death/survival, MYC, and mTOR.
- Chronic drug exposure revealed a common seven-gene expression signature in drug-tolerant cells.
Conclusions:
- YB-1 is a key regulator of medulloblastoma proliferation and invasion.
- Targeting YB-1 and the identified seven-gene signature may overcome therapy resistance.
- These findings offer new insights into medulloblastoma drug resistance mechanisms and potential therapeutic strategies.
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