Bone morphogenetic protein-7 is a MYC target with prosurvival functions in childhood medulloblastoma

G Fiaschetti1, D Castelletti, S Zoller

  • 1Department of Oncology, University Children's Hospital, Zurich, Switzerland.

Oncogene
|February 15, 2011
PubMed

Insights

High MYC oncogene levels drive bone morphogenetic protein 7 (BMP7) overexpression in pediatric medulloblastoma (MB), promoting tumor cell survival. Targeting the BMP/SMAD pathway offers a potential new therapy for this common childhood brain cancer.

Area of Science:

  • Oncology
  • Molecular Biology
  • Genetics

Background:

  • Medulloblastoma (MB) is the most common pediatric malignant brain tumor.
  • MYC oncogene amplification/overexpression correlates with poor MB prognosis, but its downstream effects are unclear.
  • Identifying MYC targets is crucial for understanding MB progression and developing targeted therapies.

Purpose of the Study:

  • To identify MYC-downstream genes in medulloblastoma.
  • To investigate the role of MYC-target genes in MB pathogenesis.
  • To explore the therapeutic potential of targeting identified MYC-regulated pathways.

Main Methods:

  • Complementary DNA microarray analysis of MB cell lines with MYC manipulation (overexpression and silencing).
  • Identification and validation of MYC-responsive genes, including bone morphogenetic protein (BMP) pathway members.
  • Correlation analysis of MYC and BMP7 expression in primary MB samples.
  • In vitro functional studies using BMP/SMAD signaling inhibitors and BMP7 silencing.

Main Results:

  • A set of 209 MYC-responsive genes was identified.
  • BMP7 was identified as a direct MYC target gene.
  • Positive correlation between MYC and BMP7 expression in MB patient samples.
  • Inhibition of BMP/SMAD signaling or BMP7 silencing blocked MB cell proliferation and SMAD phosphorylation.

Conclusions:

  • High MYC levels induce BMP7 overexpression in MB cells, contributing to cell survival.
  • The BMP/SMAD signaling pathway is implicated in MYC-driven MB progression.
  • Targeting the BMP/SMAD pathway represents a promising therapeutic strategy for medulloblastoma.

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