| Jump to: | Authorized Access | | | Attribution | | | Authorized Requests |
- Study Description
-
Important Links and Information
-
Request access via Authorized Access
- Instructions for requestors
- Data Use Certification (DUC) Agreement
- Talking Glossary of Genetic Terms
Half of prostate cancers harbor gene fusions between TMPRSS2 and members of the ETS transcription factor family. To date little is known about the presence of non-ETS fusion events in prostate cancer. We employed next-generation transcriptome sequencing (RNA-Seq) in order to explore the whole transcriptome of 25 human prostate cancer samples for the presence of chimeric fusion transcripts. We generated more than 1 billion sequence reads and used a novel computational approach (FusionSeq) in order to identify novel gene fusion candidates with high confidence. In total, we discovered and characterized seven new cancer-specific gene fusions, two involving the ETS genes ETV1 and ERG, and five involving non-ETS genes such as CDKN1A (p21), CD9 and IKBKB (IKK-beta), genes known to exhibit key biological roles in cellular homeostasis or assumed to be critical in tumorigenesis of other tumor entities, as well as the oncogene PIGU and the tumor suppressor gene RSRC2. The novel gene fusions are found to be of low frequency but interestingly, the non-ETS fusions were all present in prostate cancer harboring the TMPRSS2-ERG gene fusion. Future work will focus on determining if the ETS rearrangements in prostate cancer are associated or directly predispose to a rearrangement prone phenotype.
- Study Design:
- Prospective Longitudinal Cohort
- Study Type:
- Cohort
- Total number of consented subjects: 28
- Subject Sample Telemetry Report (SSTR)
-
Request access via Authorized Access
- Authorized Access
- Publicly Available Data
- Study Inclusion/Exclusion Criteria
Prostate tissue was obtained by robotic prostatectomy.
- Molecular Data
-
Type Source Platform Number of Oligos/SNPs SNP Batch Id Comment RNA Sequencing Illumina Genome Analyzer IIX N/A N/A - Selected Publications
- Diseases/Traits Related to Study (MeSH terms)
-
- Primary Phenotype: Prostatic Neoplasms
- Authorized Data Access Requests
- Study Attribution
-
-
Principal Investigator
- Mark A. Rubin. Weill Cornell Medical College, New York, NY, USA.
-
Institute
- Weill Cornell Medical College, New York, NY, USA.
-
Funding Source
- Prostate Cancer Foundation, Santa Monica, CA, USA.
-
Principal Investigator