Royal College of Surgeons in Ireland
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The identification of BCL-XL and MCL-1 as key anti-apoptotic proteins in medulloblastoma that mediate distinct roles in chemotherapy resistance

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posted on 2023-12-06, 17:49 authored by Marie-Claire Fitzgerald, Philip O HalloranPhilip O Halloran, Sean Kerrane, Triona Ni ChonghaileTriona Ni Chonghaile, Niamh ConnollyNiamh Connolly, Brona MurphyBrona Murphy

Medulloblastoma is the most common malignant paediatric brain tumour, representing 20% of all paediatric intercranial tumours. Current aggressive treatment protocols and the use of radiation therapy in particular are associated with high levels of toxicity and significant adverse effects, and long-term sequelae can be severe. Therefore, improving chemotherapy efficacy could reduce the current reliance on radiation therapy. Here, we demonstrated that systems-level analysis of basal apoptosis protein expression and their signalling interactions can differentiate between medulloblastoma cell lines that undergo apoptosis in response to chemotherapy, and those that do not. Combining computational predictions with experimental BH3 profiling, we identified a therapeutically-exploitable dependence of medulloblastoma cells on BCL-XL, and experimentally validated that BCL-XL targeting, and not targeting of BCL-2 or MCL-1, can potentiate cisplatin-induced cytotoxicity in medulloblastoma cell lines with low sensitivity to cisplatin treatment. Finally, we identified MCL-1 as an anti-apoptotic mediator whose targeting is required for BCL-XL inhibitor-induced apoptosis. Collectively, our study identifies that BCL-XL and MCL-1 are the key anti-apoptotic proteins in medulloblastoma, which mediate distinct protective roles. While BCL-XL has a first-line role in protecting cells from apoptosis basally, MCL-1 represents a second line of defence that compensates for BCL-XL upon its inhibition. We provide rationale for the further evaluation of BCL-XL and MCL-1 inhibitors in the treatment of medulloblastoma, and together with current efforts to improve the cancer-specificity of BCL-2 family inhibitors, these novel treatment strategies have the potential to improve the future clinical management of medulloblastoma. 

Funding

National Children’s Research Centre, Crumlin, grant number NCRC A/18/1

Irish Association for Cancer Research (IACR Educational Grant)

History

Data Availability Statement

All datasets generated and used in this study are included in this published article and in its supplementary information files. Codes used for computational analysis can be found at https://github.com/niamhconno/Fitzgerald-et-al-2023

Comments

The original article is available at https://www.nature.com/

Published Citation

Fitzgerald MC, O'Halloran PJ, Kerrane SA, Ní Chonghaile T, Connolly NMC, Murphy BM. The identification of BCL-XL and MCL-1 as key anti-apoptotic proteins in medulloblastoma that mediate distinct roles in chemotherapy resistance. Cell Death Dis. 2023;14(10):705.

Publication Date

28 October 2023

PubMed ID

37898609

Department/Unit

  • Physiology and Medical Physics
  • Centre for Systems Medicine

Publisher

Springer Nature Limited

Version

  • Published Version (Version of Record)