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Updated: Oct 13, 2025

miRNA Expression Analyses in Prostate Cancer Clinical Tissues
Published on: September 8, 2015
Dynamic expression of SNAI2 in prostate cancer predicts tumor progression and drug sensitivity
Ying Z Mazzu1, YuRou Liao1, Subhiksha Nandakumar2
1Department of Medicine, Memorial Sloan Kettering Cancer Center, New York, NY, USA.
Abstract:
Prostate cancer is a highly heterogeneous disease, understanding the crosstalk between complex genomic and epigenomic alterations will aid in developing targeted therapeutics. We demonstrate that, even though snail family transcriptional repressor 2 (SNAI2) is frequently amplified in prostate cancer, it is epigenetically silenced in this disease, with dynamic changes in SNAI2 levels showing distinct clinical relevance. Integrative clinical data from 18 prostate cancer cohorts and experimental evidence showed that gene fusion between transmembrane serine protease 2 (TMPRSS2) and ETS transcription factor ERG (ERG) (TMPRSS2-ERG fusion) is involved in the silencing of SNAI2. We created a silencer score to evaluate epigenetic repression of SNAI2, which can be reversed by treatment with DNA methyltransferase inhibitors and histone deacetylase inhibitors. Silencing of SNAI2 facilitated tumor cell proliferation and luminal differentiation. Furthermore, SNAI2 has a major influence on the tumor microenvironment by reactivating tumor stroma and creating an immunosuppressive microenvironment in prostate cancer. Importantly, SNAI2 expression levels in part determine sensitivity to the cancer drugs dasatinib and panobinostat. For the first time, we defined the distinct clinical relevance of SNAI2 expression at different disease stages. We elucidated how epigenetic silencing of SNAI2 controls the dynamic changes of SNAI2 expression that are essential for tumor initiation and progression and discovered that restoring SNAI2 expression by treatment with panobinostat enhances dasatinib sensitivity, indicating a new therapeutic strategy for prostate cancer.
Insights
Epigenetic silencing of SNAI2 in prostate cancer, driven by TMPRSS2-ERG fusion, promotes tumor growth. Restoring SNAI2 with drugs like panobinostat may improve treatment sensitivity.
Area of Science:
- Oncology
- Epigenetics
- Genomics
Background:
- Prostate cancer is characterized by genomic and epigenomic alterations.
- SNAI2 is frequently amplified but epigenetically silenced in prostate cancer.
- TMPRSS2-ERG fusion is implicated in SNAI2 silencing.
Purpose of the Study:
- To investigate the role of SNAI2 epigenetic silencing in prostate cancer.
- To evaluate the clinical relevance of SNAI2 expression dynamics.
- To explore therapeutic strategies targeting SNAI2.
Main Methods:
- Analysis of 18 prostate cancer cohorts.
- Experimental validation of SNAI2 regulation.
- Development of a silencer score for SNAI2 repression.
- Assessment of drug sensitivity based on SNAI2 levels.
Main Results:
- Epigenetic silencing of SNAI2, linked to TMPRSS2-ERG fusion, promotes tumor proliferation and differentiation.
- SNAI2 influences the tumor microenvironment, creating immunosuppression.
- SNAI2 expression levels correlate with sensitivity to dasatinib and panobinostat.
- Distinct clinical relevance of SNAI2 expression across disease stages was defined.
Conclusions:
- Epigenetic silencing of SNAI2 is crucial for prostate cancer initiation and progression.
- Restoring SNAI2 expression via panobinostat enhances dasatinib sensitivity.
- Targeting SNAI2 represents a novel therapeutic strategy for prostate cancer.
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