4.8 Article

An oncogenic super-enhancer formed through somatic mutation of a noncoding intergenic element

Journal

SCIENCE
Volume 346, Issue 6215, Pages 1373-1377

Publisher

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.1259037

Keywords

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Funding

  1. Claudia Adams Barr Innovative Basic Science Research Program
  2. Kay Kendall Leukaemia Trust
  3. Leukaemia and Lymphoma Research, UK
  4. National Cancer Institute, NIH [CA167124]
  5. Department of Defense [CA120215]
  6. William Lawrence and Blanche Hughes Foundation
  7. National Research Foundation (NRF), Prime Minister's Office, Singapore under its NRF Fellowship Program [NRF-NRFF2013-02]
  8. NIH [1R01CA176746-01, 5P01CA109901-08, 5P01CA68484, CA98543, CA114766, CA98413, CA30969, CA29139]

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In certain human cancers, the expression of critical oncogenes is driven from large regulatory elements, called super-enhancers, that recruit much of the cell's transcriptional apparatus and are defined by extensive acetylation of histone H3 lysine 27 (H3K27ac). In a subset of T-cell acute lymphoblastic leukemia (T-ALL) cases, we found that heterozygous somatic mutations are acquired that introduce binding motifs for the MYB transcription factor in a precise noncoding site, which creates a super-enhancer upstream of the TAL1 oncogene. MYB binds to this new site and recruits its H3K27 acetylase-binding partner CBP, as well as core components of a major leukemogenic transcriptional complex that contains RUNX1, GATA-3, and TAL1 itself. Additionally, most endogenous super-enhancers found in T-ALL cells are occupied by MYB and CBP, which suggests a general role for MYB in super-enhancer initiation. Thus, this study identifies a genetic mechanism responsible for the generation of oncogenic super-enhancers in malignant cells.

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