Enhancer invasion shapes MYCN-dependent transcriptional amplification in neuroblastoma
Amplification of the locus encoding the oncogenic transcription factor MYCN is a defining feature of high-risk neuroblastoma. Here we present the first dynamic chromatin and transcriptional landscape of MYCN perturbation in neuroblastoma. At oncogenic levels, MYCN associates with E-box binding motif...
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Veröffentlicht in: | Nature genetics 2018-04, Vol.50 (4), p.515-523 |
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Sprache: | eng |
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Zusammenfassung: | Amplification of the locus encoding the oncogenic transcription factor MYCN is a defining feature of high-risk neuroblastoma. Here we present the first dynamic chromatin and transcriptional landscape of MYCN perturbation in neuroblastoma. At oncogenic levels, MYCN associates with E-box binding motifs in an affinity-dependent manner, binding to strong canonical E-boxes at promoters and invading abundant weaker non-canonical E-boxes clustered at enhancers. Loss of MYCN leads to a global reduction in transcription, which is most pronounced at MYCN target genes with the greatest enhancer occupancy. These highly occupied MYCN target genes show tissue-specific expression and are linked to poor patient survival. The activity of genes with MYCN-occupied enhancers is dependent on the tissue-specific transcription factor TWIST1, which co-occupies enhancers with MYCN and is required for MYCN-dependent proliferation. These data implicate tissue-specific enhancers in defining often highly tumor-specific ‘MYC target gene signatures’ and identify disruption of the MYCN enhancer regulatory axis as a promising therapeutic strategy in neuroblastoma.
This study investigates the effects of MYCN on the chromatin and transcriptional landscape of neuroblastoma. The authors find that, at oncogenic levels, MYCN binds to canonical E-boxes at promoters and invades enhancers, leading to transcriptional amplification. |
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ISSN: | 1061-4036 1546-1718 |
DOI: | 10.1038/s41588-018-0044-9 |