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September 5, 2024Cancer Research0 citations

Abstract A020 MYCN overexpression biases human sympatho-adrenergic development towards progenitor cells causing neuroblastoma-like tumor xenografts

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SHStéphane Van HaverJBJan Willem BekJLJubierre Luz

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Abstract

Abstract Neuroblastoma (NB) is a developmental disorder in children, accounting for ∼10% of pediatric cancers and being the leading cause of cancer-related deaths in children under five. Originating along the developing sympathetic axis, typically in the adrenal medulla, NB is characterized by disrupted differentiation of neural crest cells (NCCs) into human sympatho-adrenergic progenitors (hSAPs). MYCN, a crucial member of the MYC oncogene family, is essential for neural progenitor cell self-renewal, migration, and neural fate maintenance during early development. Dysregulated MYCN expression is linked to NB initiation and progression, especially during hSAP development, though the exact mechanisms remain unclear. To elucidate the effects of MYCN overexpression on hSAP development and NB-like tumor formation, we utilized an in vitro pluripotent stem cell-based hSAP developmental model. MYCN amplification, present in 25-30% of NB cases, is linked to high-risk disease and poor outcomes. Although MYCN induces apoptosis via pro-apoptotic factor transcription and DNA damage, its impact on hSAP lineage differentiation remains unclear. Using single-cell RNA sequencing we identified distinct developmental subpopulations in MYCN-overexpressing cells, with some showing abnormal development. Survival varied by developmental stage, with selective depletion in bridging cells and CPCs/ECCs. MYCN-overexpressing populations exhibited elevated replicative stress signatures and upregulation of survival genes, including GSK3B and components of the PI3K-AKT-MTOR and MAPK pathways, crucial for cell proliferation and survival in NB progression. Xenograft experiments showed that MYCN-overexpressing cells formed tumors regardless of the developmental time point of implantation. However, tumors from multipotent NCCs (D16) and the hSAP developmental window (D27, 29, 31) exhibited transcriptome and epigenetic differences. Tumors from multipotent NCCs resembled sympathoblasts but lacked true NB tumor expression signatures. This suggests MYCN overexpression biases non-lineage-restricted NCCs toward the hSAP lineage. Our findings reveal that MYCN overexpression induces transcriptional features like those observed in NB within sympatho-adrenergic progenitors (SAPs). Overexpression of MYCN enhances the activity of pro-survival, proliferation, and DNA-replication stress-response signaling pathways, selectively enriching for SAPs while inducing the death of other developmental populations. Moreover, surviving SAPs can develop into NB-like tumors, which are highly dependent on MYCN signaling, when implanted into a mouse xenograft model, showing a shorter latency compared to mice injected with earlier neural crest precursors. These findings elucidate the intricate relationship between MYCN, developmental stages, and NB pathogenesis, highlighting the need for targeted therapeutic strategies. Citation Format: Stephane Van Haver, Sarah-Lee Bekaert, Jubierre Luz, Celine Everaert, Ines Fernandez Maestre, Katleen De Preter, Ting Zhou, Alex Kentsis, Lorenz Studer, Hiroyuki Shimada, Frank Speleman, Stephen Roberts. MYCN overexpression biases human sympatho-adrenergic development towards progenitor cells causing neuroblastoma-like tumor xenografts abstract. In: Proceedings of the AACR Special Conference in Cancer Research: Advances in Pediatric Cancer Research; 2024 Sep 5-8; Toronto, Ontario, Canada. Philadelphia (PA): AACR; Cancer Res 2024;84(17 Suppl):Abstract nr A020.

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Haver et al. (2024) studied this question.

synapsesocial.com/papers/68e5944ab6db64358752f8d7https://doi.org/10.1158/1538-7445.pediatric24-a020
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Expansion of a neural crest gene signature following ectopic MYCN expression in sympathoadrenal lineage cells in vivo2024
  2. 2Expansion of a neural crest gene signature following ectopic MYCN expression in sympathoadrenal lineage cells in vivo2024
  3. 3Abstract LB492: Chromosome 17q genes BIRC5, CDC6, IGF2BP1, and TK1 are oncogenic dependencies in MYCN-amplified neuroblastoma2026
  4. 4Abstract 153: Noncoding elements of MYCN mRNA are powerful drivers on oncogenicity in neuroblastoma2024
  5. 5Coexpression of MYCN and ALK Induces Neuroblastoma‐Like Tumors From Human iPS Cell‐Derived Cranial Neural Crest Cells2026 · 1 citations