4.4 Article

Altered Prostate Epithelial Development and IGF-1 Signal in Mice Lacking the Androgen Receptor in Stromal Smooth Muscle Cells

期刊

PROSTATE
卷 71, 期 5, 页码 517-524

出版社

WILEY-BLACKWELL
DOI: 10.1002/pros.21264

关键词

stroma; transgelin; Cre-loxP; gene knockout

资金

  1. NIH [CA127300, CA137474]
  2. George H. Whipple Professorship Endowment
  3. Taiwan Department of Health Clinical Trial and Research Center of Excellence [DOH99-TD-B-111-004]

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BACKGROUND. Androgens and the androgen receptor (AR) play critical roles in the prostate development via mesenchymal-epithelial interactions. Smooth muscle cells (SMC), differentiated from mesenchyme, are one of the basic components of the prostate stroma. However, the roles of smooth muscle AR in prostate development are still obscure. METHODS. We established the smooth muscle selective AR knockout (SM-ARKO) mouse model using the Cre-loxP system, and confirmed the ARKO efficiency at RNA, DNA and protein levels. Then, we observed the prostate morphology changes, and determined the epithelial proliferation, apoptosis, and differentiation. We also knocked down the AR in a prostate smooth muscle cell line (PS-1) to confirm the in vivo findings and to probe the mechanism. RESULTS. The AR was selectively and efficiently knocked out in the anterior prostates of SM-ARKO mouse. The SM-ARKO prostates have defects with loss of infolding structures, and decrease of epithelial proliferation, but with little change of apoptosis and differentiation. The mechanism studies showed that IGF-1 expression level decreased in the SM-ARKO prostates and AR-knockdown PS-1 cells. The decreased IGF-1 expression might contribute to the defective development of SM-ARKO prostates. CONCLUSIONS. The AR in SMCs plays important roles in the prostate development via the regulation of IGF-1 signal. Prostate 71: 517-524, 2011. (C) 2010 Wiley-Liss, Inc.

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