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Published on: April 27, 2018
Recurrent rearrangements in prostate cancer: causes and therapeutic potential
Nicole M White1, Felix Y Feng, Christopher A Maher
1Division of Oncology, Department of Medicine, Washington University School of Medicine, St Louis, MO 63110, USA.
Abstract:
DNA damage and genetic rearrangements are hallmarks of cancer. However, gene fusions as driver mutations in cancer have classically been a distinction in leukemia and other rare instances until recently with the discovery of gene fusion events occurring in 50 to 75% of prostate cancer patients. The discovery of the TMPRSS2-ERG fusion sparked an onslaught of discovery and innovation resulting in a delineation of prostate cancer via a molecular signature of gene fusion events. The increased commonality of high-throughput sequencing data coupled with improved bioinformatics approaches not only elucidated the molecular underpinnings of prostate cancer progression, but the mechanisms of gene fusion biogenesis. Interestingly, the androgen receptor (AR), already known to play a significant role in prostate cancer tumorigenesis, has recently been implicated in the processes resulting in gene fusions by inducing the spatial proximity of genes involved in rearrangements, promoting the formation of double-strand DNA breaks (DSB), and facilitating the recruitment of proteins for non-homologous end-joining (NHEJ). Our increased understanding of the mechanisms inducing genomic instability may lead to improved diagnostic and therapeutic strategies. To date, the majority of prostate cancer patients can be molecularly stratified based on their gene fusion status thereby increasing the potential for tailoring more specific and effective therapies.
Insights
Gene fusions are common in prostate cancer, driving tumor development. Understanding these genetic events and the role of the androgen receptor (AR) can lead to better diagnostics and targeted therapies.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- DNA damage and genetic rearrangements are key features of cancer.
- Gene fusions were previously considered rare driver mutations, mainly in leukemia.
- Recent discoveries show gene fusions occur in 50-75% of prostate cancer cases.
Purpose of the Study:
- To explore the role of gene fusions in prostate cancer.
- To understand the mechanisms of gene fusion biogenesis.
- To investigate the androgen receptor's (AR) involvement in gene fusion formation.
Main Methods:
- Analysis of high-throughput sequencing data.
- Application of advanced bioinformatics approaches.
- Investigation of androgen receptor's role in DNA double-strand breaks (DSB) and non-homologous end-joining (NHEJ).
Main Results:
- The TMPRSS2-ERG fusion discovery revolutionized prostate cancer research.
- Gene fusions provide a molecular signature for prostate cancer stratification.
- The androgen receptor (AR) promotes gene fusions by inducing DNA breaks and facilitating repair mechanisms.
Conclusions:
- Genomic instability mechanisms in prostate cancer are increasingly understood.
- Molecular stratification of prostate cancer patients based on gene fusion status is feasible.
- Improved understanding may lead to enhanced diagnostic and therapeutic strategies for prostate cancer.
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