RRM2 enhances MYCN-driven neuroblastoma formation and acts as a synergistic target with CHK1 inhibition

Publication date

2022-07

Authors

Nunes, Carolina
Depestel, Lisa
Mus, Liselot
Keller, Kaylee M.
Delhaye, Louis
Louwagie, Amber
Rishfi, Muhammad
Whale, Alex
Kara, Neesha
Andrews, Simon R.

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Advisors

Supervisors

Document Type

Article
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License

cc_by_nc

Abstract

High-risk neuroblastoma, a pediatric tumor originating from the sympathetic nervous system, has a low mutation load but highly recurrent somatic DNA copy number variants. Previously, segmental gains and/or amplifications allowed identification of drivers for neuroblastoma development. Using this approach, combined with gene dosage impact on expression and survival, we identified ribonucleotide reductase subunit M2 (RRM2) as a candidate dependency factor further supported by growth inhibition upon in vitro knockdown and accelerated tumor formation in a neuroblastoma zebrafish model coexpressing human RRM2 with MYCN. Forced RRM2 induction alleviates excessive replicative stress induced by CHK1 inhibition, while high RRM2 expression in human neuroblastomas correlates with high CHK1 activity. MYCN-driven zebrafish tumors with RRM2 co-overexpression exhibit differentially expressed DNA repair genes in keeping with enhanced ATR-CHK1 signaling activity. In vitro, RRM2 inhibition enhances intrinsic replication stress checkpoint addiction. Last, combinatorial RRM2-CHK1 inhibition acts synergistic in high-risk neuroblastoma cell lines and patient-derived xenograft models, illustrating the therapeutic potential.

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Citation

Nunes, C, Depestel, L, Mus, L, Keller, K M, Delhaye, L, Louwagie, A, Rishfi, M, Whale, A, Kara, N, Andrews, S R, Cruz, F D, You, D, Siddiquee, A, Cologna, C T, De Craemer, S, Dolman, E, Bartenhagen, C, De Vloed, F, Sanders, E, Eggermont, A, Bekaert, S L, Van Loocke, W, Bek, J W, Dewyn, G, Loontiens, S, Van Isterdael, G, Decaesteker, B, Tilleman, L, Van Nieuwerburgh, F, Vermeirssen, V, Van Neste, C, Ghesquiere, B, Goossens, S, Eyckerman, S, De Preter, K, Fischer, M, Houseley, J, Molenaar, J, De Wilde, B, Roberts, S S, Durinck, K & Speleman, F 2022, 'RRM2 enhances MYCN-driven neuroblastoma formation and acts as a synergistic target with CHK1 inhibition', Science advances, vol. 8, no. 28, eabn1382, pp. 1-25. https://doi.org/10.1126/sciadv.abn1382