| Literature DB >> 28434841 |
Surya Nagaraja1, Nicholas A Vitanza1, Pamelyn J Woo1, Kathryn R Taylor1, Fang Liu2, Lei Zhang2, Meng Li2, Wei Meng3, Anitha Ponnuswami1, Wenchao Sun1, Jie Ma3, Esther Hulleman4, Tomek Swigut5, Joanna Wysocka6, Yujie Tang7, Michelle Monje8.
Abstract
Diffuse intrinsic pontine glioma (DIPG) is a fatal pediatric cancer with limited therapeutic options. The majority of cases of DIPG exhibit a mutation in histone-3 (H3K27M) that results in oncogenic transcriptional aberrancies. We show here that DIPG is vulnerable to transcriptional disruption using bromodomain inhibition or CDK7 blockade. Targeting oncogenic transcription through either of these methods synergizes with HDAC inhibition, and DIPG cells resistant to HDAC inhibitor therapy retain sensitivity to CDK7 blockade. Identification of super-enhancers in DIPG provides insights toward the cell of origin, highlighting oligodendroglial lineage genes, and reveals unexpected mechanisms mediating tumor viability and invasion, including potassium channel function and EPH receptor signaling. The findings presented demonstrate transcriptional vulnerabilities and elucidate previously unknown mechanisms of DIPG pathobiology.Entities:
Keywords: BRD4; CDK7; DIPG; EPH; oligodendrocyte precursor cell; potassium channel; super-enhancer
Mesh:
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Year: 2017 PMID: 28434841 PMCID: PMC5462626 DOI: 10.1016/j.ccell.2017.03.011
Source DB: PubMed Journal: Cancer Cell ISSN: 1535-6108 Impact factor: 31.743