4.8 Article

Androgen-Induced TMPRSS2 Activates Matriptase and Promotes Extracellular Matrix Degradation, Prostate Cancer Cell Invasion, Tumor Growth, and Metastasis

Journal

CANCER RESEARCH
Volume 75, Issue 14, Pages 2949-2960

Publisher

AMER ASSOC CANCER RESEARCH
DOI: 10.1158/0008-5472.CAN-14-3297

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Funding

  1. Taiwan National Science Council [NSC 100-2628-B-002-004-MY4]
  2. Ministry of Science and Technology [MOST 103-2321-B-002-096]
  3. National Health Research Institutes [NHRI-EX102-9909BC, NHRI-EX104-10401BI]
  4. National Taiwan University [NTU-FIRG-98R0305, NTU-CESRP-104R7602C4]
  5. National Science Council [NSC99-1301-05-04-02]

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Dysregulation of androgen signaling and pericellular proteolysis is necessary for prostate cancer progression, but the links between them are still obscure. In this study, we show how the membrane-anchored serine protease TMPRSS2 stimulates a proteolytic cascade that mediates androgen-induced prostate cancer cell invasion, tumor growth, and metastasis. We found that matriptase serves as a substrate for TMPRSS2 in mediating this proinvasive action of androgens in prostate cancer. Further, we determined that higher levels of TMPRSS2 expression correlate with higher levels of matriptase activation in prostate cancer tissues. Lastly, we found that the ability of TMPRSS2 to promote prostate cancer tumor growth and metastasis was associated with increased matriptase activation and enhanced degradation of extracellular matrix nidogen-1 and laminin beta 1 in tumor xenografts. In summary, our results establish that TMPRSS2 promotes the growth, invasion, and metastasis of prostate cancer cells via matriptase activation and extracellular matrix disruption, with implications to target these two proteases as a strategy to treat prostate cancer. (C)2015 AACR.

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