| Literature DB >> 28783165 |
Ken J Kron1, Alexander Murison1, Stanley Zhou1,2, Vincent Huang3, Takafumi N Yamaguchi3, Yu-Jia Shiah3, Michael Fraser1, Theodorus van der Kwast4, Paul C Boutros2,3,5, Robert G Bristow1,2,6, Mathieu Lupien1,2,3.
Abstract
TMPRSS2-ERG (T2E) structural rearrangements typify ∼50% of prostate tumors and result in overexpression of the ERG transcription factor. Using chromatin, genomic and expression data, we show distinct cis-regulatory landscapes between T2E-positive and non-T2E primary prostate tumors, which include clusters of regulatory elements (COREs). This difference is mediated by ERG co-option of HOXB13 and FOXA1, implementing a T2E-specific transcriptional profile. We also report a T2E-specific CORE on the structurally rearranged ERG locus arising from spreading of the TMPRSS2 locus pre-existing CORE, assisting in its overexpression. Finally, we show that the T2E-specific cis-regulatory landscape underlies a vulnerability against the NOTCH pathway. Indeed, NOTCH pathway inhibition antagonizes the growth and invasion of T2E-positive prostate cancer cells. Taken together, our work shows that overexpressed ERG co-opts master transcription factors to deploy a unique cis-regulatory landscape, inducing a druggable dependency on NOTCH signaling in T2E-positive prostate tumors.Entities:
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Year: 2017 PMID: 28783165 DOI: 10.1038/ng.3930
Source DB: PubMed Journal: Nat Genet ISSN: 1061-4036 Impact factor: 38.330