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Updated: Jul 15, 2025

Zebrafish Model of Neuroblastoma Metastasis
Published on: March 14, 2021
Target Genes of c-MYC and MYCN with Prognostic Power in Neuroblastoma Exhibit Different Expressions during
Ye Yuan1, Mohammad Alzrigat1, Aida Rodriguez-Garcia1
1Department of Microbiology, Tumor and Cell Biology (MTC), Biomedicum, Karolinska Institutet, SE-171 65 Stockholm, Sweden.
Abstract:
Deregulation of the MYC family of transcription factors c-MYC (encoded by MYC), MYCN, and MYCL is prevalent in most human cancers, with an impact on tumor initiation and progression, as well as response to therapy. In neuroblastoma (NB), amplification of the MYCN oncogene and over-expression of MYC characterize approximately 40% and 10% of all high-risk NB cases, respectively. However, the mechanism and stage of neural crest development in which MYCN and c-MYC contribute to the onset and/or progression of NB are not yet fully understood. Here, we hypothesized that subtle differences in the expression of MYCN and/or c-MYC targets could more accurately stratify NB patients in different risk groups rather than using the expression of either MYC gene alone. We employed an integrative approach using the transcriptome of 498 NB patients from the SEQC cohort and previously defined c-MYC and MYCN target genes to model a multigene transcriptional risk score. Our findings demonstrate that defined sets of c-MYC and MYCN targets with significant prognostic value, effectively stratify NB patients into different groups with varying overall survival probabilities. In particular, patients exhibiting a high-risk signature score present unfavorable clinical parameters, including increased clinical risk, higher INSS stage, MYCN amplification, and disease progression. Notably, target genes with prognostic value differ between c-MYC and MYCN, exhibiting distinct expression patterns in the developing sympathoadrenal system. Genes associated with poor outcomes are mainly found in sympathoblasts rather than in chromaffin cells during the sympathoadrenal development.
Insights
Subtle differences in MYC target gene expression can stratify neuroblastoma (NB) patients into risk groups. This multigene score predicts overall survival and clinical parameters, offering a refined approach beyond single gene expression.
Area of Science:
- Oncology
- Molecular Biology
- Developmental Biology
Background:
- Deregulation of MYC family transcription factors (c-MYC, MYCN, MYCL) is common in human cancers.
- In neuroblastoma (NB), MYCN amplification and c-MYC overexpression occur in high-risk cases, but their developmental roles are unclear.
Purpose of the Study:
- To investigate if MYCN and c-MYC target gene expression can better stratify NB patients than individual gene expression.
- To develop a multigene transcriptional risk score for NB patient stratification.
Main Methods:
- Integrative analysis of transcriptomes from 498 NB patients (SEQC cohort).
- Modeling a multigene transcriptional risk score using defined c-MYC and MYCN target genes.
Main Results:
- Defined sets of c-MYC and MYCN targets show significant prognostic value, stratifying NB patients by overall survival.
- High-risk signature scores correlate with unfavorable clinical parameters: increased risk, higher INSS stage, MYCN amplification, and disease progression.
- Prognostic target genes differ between c-MYC and MYCN, with distinct expression patterns in developing sympathoadrenal cells (sympathoblasts vs. chromaffin cells).
Conclusions:
- A multigene transcriptional risk score based on MYC target genes effectively stratifies NB patients.
- This approach refines risk stratification beyond single MYC gene expression, aiding in understanding NB pathogenesis.
- Distinct roles of c-MYC and MYCN targets in sympathoadrenal development may influence NB onset and progression.
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