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The role of DAB2IP in androgen receptor activation during prostate cancer progression
11] Department of Urology, University of Texas Southwestern Medical Center, Dallas, TX, USA [2] Department of Urology, The First Affiliated Hospital, Medical School of Xi'an Jiaotong University, Xi'an, Shaanxi, China.
Abstract:
Altered androgen-receptor (AR) expression and/or constitutively active AR are commonly associated with prostate cancer (PCa) progression. Targeting AR remains a focal point for designing new strategy of PCa therapy. Here, we have shown that DAB2IP, a novel tumor suppressor in PCa, can inhibit AR-mediated cell growth and gene activation in PCa cells via distinct mechanisms. DAB2IP inhibits the genomic pathway by preventing AR nuclear translocation or phosphorylation and suppresses the non-genomic pathway via its unique functional domain to inactivate c-Src. Also, DAB2IP is capable of suppressing AR activation in an androgen-independent manner. In addition, DAB2IP can inhibit several AR splice variants showing constitutive activity in PCa cells. In DAB2IP(-/-) mice, the prostate gland exhibits hyperplastic epithelia, in which AR becomes more active. Consistently, DAB2IP expression inversely correlates with AR activation status particularly in recurrent or metastatic PCa patients. Taken together, DAB2IP is a unique intrinsic AR modulator in normal cells, and likely can be further developed into a therapeutic agent for PCa.
Insights
DAB2IP, a novel tumor suppressor, inhibits prostate cancer (PCa) growth by targeting the androgen receptor (AR). Reduced DAB2IP correlates with increased AR activity, suggesting its therapeutic potential for PCa.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Androgen receptor (AR) dysregulation drives prostate cancer (PCa) progression.
- Targeting AR is a key strategy in PCa therapy.
Purpose of the Study:
- To investigate the role of DAB2IP as a tumor suppressor in PCa.
- To elucidate the mechanisms by which DAB2IP modulates AR activity.
Main Methods:
- Investigated DAB2IP's effect on AR-mediated cell growth and gene activation in PCa cells.
- Examined DAB2IP's inhibition of genomic and non-genomic AR pathways.
- Utilized DAB2IP(-/-) mouse models and analyzed patient data.
Main Results:
- DAB2IP inhibits AR nuclear translocation, phosphorylation, and c-Src activity.
- DAB2IP suppresses both androgen-dependent and -independent AR activation.
- DAB2IP inhibits constitutively active AR splice variants.
- DAB2IP deficiency leads to hyperplastic prostate epithelia with increased AR activity.
- DAB2IP expression inversely correlates with AR activation in recurrent/metastatic PCa.
Conclusions:
- DAB2IP acts as a novel intrinsic AR modulator in normal cells.
- DAB2IP exhibits significant potential as a therapeutic agent for PCa.
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