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Leukemia. 2014 Aug;28(8):1725-1735. doi: 10.1038/leu.2014.70. Epub 2014 Feb 12.

Promiscuous MYC locus rearrangements hijack enhancers but mostly super-enhancers to dysregulate MYC expression in multiple myeloma.

Author information

1
Mayo Clinic Arizona, Comprehensive Cancer Center, 13400 E. Shea Blvd Scottsdale, Arizona 85259.
2
Genetics Branch, Center for Cancer Research, National Cancer Institute, Bethesda, MD 20892-5055.
3
Translational Genomics Research Institute, 445 N. Fifth Street, Phoenix, Arizona 85004.
#
Contributed equally

Abstract

MYC locus rearrangements-often complex combinations of translocations, insertions, deletions and inversions-in multiple myeloma (MM) were thought to be a late progression event, which often did not involve immunoglobulin genes. Yet, germinal center activation of MYC expression has been reported to cause progression to MM in an MGUS (monoclonal gammopathy of undetermined significance)-prone mouse strain. Although previously detected in 16% of MM, we find MYC rearrangements in nearly 50% of MM, including smoldering MM, and they are heterogeneous in some cases. Rearrangements reposition MYC near a limited number of genes associated with conventional enhancers, but mostly with super-enhancers (e.g., IGH, IGL, IGK, NSMCE2, TXNDC5, FAM46C, FOXO3, IGJ, PRDM1). MYC rearrangements are associated with a significant increase of MYC expression that is monoallelic, but MM tumors lacking a rearrangement have biallelic MYC expression at significantly higher levels than in MGUS. We also have shown that germinal center activation of MYC does not cause MM in a mouse strain that rarely develops spontaneous MGUS. It appears that increased MYC expression at the MGUS/MM transition usually is biallelic, but sometimes can be monoallelic if there is an MYC rearrangement. Our data suggest that MYC rearrangements, regardless of when they occur during MM pathogenesis, provide one event that contributes to tumor autonomy.

PMID:
24518206
PMCID:
PMC4126852
DOI:
10.1038/leu.2014.70
[Indexed for MEDLINE]
Free PMC Article

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