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Activation of SOX2 expression by BRD4-NUT oncogenic fusion drives neoplastic transformation in NUT midline carcinoma
Ranran Wang1, Wei Liu1, Christine M Helfer1
1Authors' Affiliations: Department of Microbiology, University of Pennsylvania Perelman School of Medicine; and Molecular and Cellular Oncogenesis Program, The Wistar Institute, Philadelphia, Pennsylvania; Department of Medical Oncology, Dana-Farber Cancer Institute, Dana 510D; and Department of Pathology, Brigham and Women's Hospital/Harvard Medical School, Boston, Massachusetts.
Abstract:
BRD4 is implicated in the pathogenesis of a number of different cancers. It is also the target of translocation t(15;19) that accounts for the highly aggressive NUT midline carcinoma (NMC). We discovered that t(15;19) NMC cells display the ability to grow into stem cell-like spheres and express an exceptionally high level of the stem cell marker, SOX2. The BRD4-NUT fusion oncogene resulting from t(15;19) translocation is required for the abnormal activation of SOX2, which drives the stem cell-like proliferation and cellular transformation in NMC cells. SOX2 knockdown phenocopies the effects of BRD4-NUT inhibition, whereas ectopic SOX2 expression rescues the phenotype. The BRD4-NUT-induced abnormal SOX2 activation was observed in multiple NMC cell lines as well as in NMC primary tumors. We further demonstrate that BRD4-NUT oncoprotein recruits p300 to stimulate transcription activation and that inhibition of p300 represses SOX2 transcription in NMC cells. These studies identify this stem cell marker as a novel BRD4-NUT target that supports the highly aggressive transforming activity of t(15;19) carcinomas. Our study provides new mechanistic insights for understanding how alteration of BRD4 function by BRD4-NUT oncogene leads to the highly malignant NMC carcinoma. Because abnormal stem cell self-renewal is frequently observed during tumor formation and metastasis, the aberrant stem cell-like proliferation associated with BRD4 dysregulation observed in NMC carcinoma may have implications for studying the oncogenic mechanism of other BRD4-associated tumors.
Insights
The BRD4-NUT oncogene drives aggressive NUT midline carcinoma by abnormally activating the stem cell marker SOX2. Inhibiting SOX2 or p300 blocks cancer cell growth, revealing a new therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- BRD4 is involved in various cancers.
- The t(15;19) translocation creates the BRD4-NUT fusion oncogene, driving NUT midline carcinoma (NMC).
Purpose of the Study:
- To investigate the role of SOX2 in BRD4-NUT-driven NMC.
- To elucidate the mechanism of SOX2 activation by BRD4-NUT.
Main Methods:
- Analysis of NMC cell lines and primary tumors.
- SOX2 knockdown and ectopic expression experiments.
- Investigation of BRD4-NUT and p300 interaction.
Main Results:
- NMC cells exhibit stem cell-like properties and high SOX2 expression.
- BRD4-NUT is essential for SOX2 activation, driving proliferation and transformation.
- BRD4-NUT recruits p300 to activate SOX2 transcription; p300 inhibition reduces SOX2 levels.
Conclusions:
- SOX2 is a novel target of BRD4-NUT, crucial for NMC's aggressive phenotype.
- BRD4-NUT-mediated SOX2 activation offers a potential therapeutic strategy for NMC.
- Understanding this mechanism may inform treatments for other BRD4-associated cancers.
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