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MYCN and the epigenome

Frontiers in Oncology · 2013 · Vol. 3 · pp. 1–1
Stanley HeZhihui LiuDoo‐Yi OhCarol J. Thiele

Abstract

It is well known that Neuroblastoma (NB) patients whose tumors have an undifferentiated histology and a transcriptome enriched in cell cycle genes have a worse prognosis. This contrasts with the good prognoses of patients whose tumors have histologic evidence of differentiation and a transcriptome enriched in differentiation genes. Tumor cell lines from poor prognosis, high-risk patients contain a number of genetic alterations, including amplification of MYCN, 1pLOH, and unbalanced 11q or gains of Chr 17 and 7, and exhibit uncontrolled growth and an undifferentiated phenotype in in vitro culture. Yet treatment of such NB cell lines with retinoic acid results in growth control and induction of differentiation. This indicates that the signaling pathways that regulate cell growth and differentiation are not functionally lost but dysregulated. Agents such as retinoic acid normalize the signaling pathways and impose growth control and induction of differentiation. Recent studies in embryonic stem cells indicate that polycomb repressor complex proteins (PRC1 and PRC2) play a major role in regulating stem cell lineage specification and coordinating the shift from a transcriptome that supports self-renewal or growth to one that specifies lineage and controls growth. We have shown that in NB, the PRC2 complex is elevated in undifferentiated NB tumors and functions to suppress a number of tumor suppressor genes. This study will review the role of MYC genes in regulating the epigenome in normal development and explore how this role may be altered during tumorigenesis.

Protein Degradation and InhibitorsCancer-related gene regulationHistone Deacetylase Inhibitors ResearchEpigenomeMedicineCancer researchOncologyBiologyDNA methylationGeneticsGene
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References
p300/CBP proteins: HATs for transcriptional bridges and scaffolds
Journal of Cell Science · 2001 · 1,083 citations
The language of covalent histone modifications
Nature · 2000 · 8,530 citations
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