Ligand-dependent inhibition of β-catenin/TCF signaling by androgen receptor

被引:130
作者
Chesire, DR
Isaacs, WB
机构
[1] Johns Hopkins Med Inst, Brady Urol Inst, Res Labs, Baltimore, MD 21287 USA
[2] Johns Hopkins Med Inst, Johns Hopkins Oncol Ctr, Baltimore, MD 21287 USA
关键词
androgen receptor; beta-catenin; TCF/LEF; prostate; nuclear signaling;
D O I
10.1038/sj.onc.1206049
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
beta-catenin signaling may contribute to prostate cancer (CaP) progression. Although beta-catenin is known to upregulate T cell factor (TCF) target gene expression in CaP cells, recent evidence demonstrates its capacity to enhance ligand-dependent androgen receptor (AR) function. Thus, we wished to further understand the interaction between these two pathways. We find in both CaP cells (CWR22-Rv1, LAPC-4, DU145) and non-CaP cells (HEK-293, TSU, SW480, HCT-116) that beta-catenin/TCF-related transcription (CRT), as measured by activation of a synthetic promoter and that of cyclin D1, is inhibited by androgen treatment. This inhibition is AR-dependent, as it only occurs in cells expressing AR endogenously or transiently, and is abrogated by AR antagonists. Additional analyses convey that the ligand-dependent nature of CRT suppression depends on transactivation-competent AR in the nucleus, but not on indirect effects stemming from AR target gene expression. Given the recent work identifying an AR/beta-catenin interaction, and from our finding that liganded AR does not prompt gross changes in the constitutive nuclear localization of TCF4 or mutant beta-catenin, we hypothesized that transcription factor (i.e. AR and TCF) competition for beta-catenin recruitment may explain, in part, androgen-induced suppression of CRT. To address this idea, we expressed an AR mutant lacking its DNA-binding domain (DBD). This receptor could not orchestrate ligand-dependent CRT repression, thereby providing support for those recent data implicating the AR DBD/LBD as necessary for beta-catenin interaction. Further supporting this hypothesis, TCF/LEF overexpression counteracts androgen-induced suppression of CRT, and requires beta-catenin binding activity to do so. Interestingly, TCF4 over-expression potently antagonizes AR function; however, this inhibition may occur independently of beta-catenin/TCF4 interaction. These results from TCF4 over-expression analyses, taken together, provide further evidence that AR-mediated suppression of CRT is a consequence of limiting amounts of beta-catenin, and not AR target gene expression. Our analyses point to a reciprocal balance between AR and CRT function that may shape critical processes during normal prostate development and tumor progression.
引用
收藏
页码:8453 / 8469
页数:17
相关论文
共 99 条
[61]   Synergy between tumor suppressor APC and the β-catenin-Tcf4 target Tcf1 [J].
Roose, J ;
Huls, G ;
van Beest, M ;
Moerer, P ;
van der Horn, K ;
Goldschmeding, R ;
Logtenberg, T ;
Clevers, H .
SCIENCE, 1999, 285 (5435) :1923-1926
[62]   The APC tumour suppressor has a nuclear export function [J].
Rosin-Arbesfeld, R ;
Townsley, F ;
Bienz, M .
NATURE, 2000, 406 (6799) :1009-1012
[63]   Stabilization of beta-catenin by genetic defects in melanoma cell lines [J].
Rubinfeld, B ;
Robbins, P ;
ElGamil, M ;
Albert, I ;
Porfiri, E ;
Polakis, P .
SCIENCE, 1997, 275 (5307) :1790-1792
[64]   PIASy, a nuclear matrix-associated SUMO E3 ligase, represses LEF1 activity by sequestration into nuclear bodies [J].
Sachdev, S ;
Bruhn, L ;
Sieber, H ;
Pichler, A ;
Melchior, F ;
Grosschedl, R .
GENES & DEVELOPMENT, 2001, 15 (23) :3088-3103
[65]   Inhibition of β-catenin-mediated transactivation by cadherin derivatives [J].
Sadot, E ;
Simcha, I ;
Shtutman, M ;
Ben-Ze'ev, A ;
Geiger, B .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1998, 95 (26) :15339-15344
[66]  
Sambrook J., 1989, MOL CLONING
[67]  
Samowitz WS, 1999, CANCER RES, V59, P1442
[68]   AXIN1 mutations in hepatocellular carcinomas, and growth suppression in cancer cells by virus-mediated transfer of AXIN1 [J].
Satoh, S ;
Daigo, Y ;
Furukawa, Y ;
Kato, T ;
Miwa, N ;
Nishiwaki, T ;
Kawasoe, T ;
Ishiguro, H ;
Fujita, M ;
Tokino, T ;
Sasaki, Y ;
Imaoka, S ;
Murata, M ;
Shimano, T ;
Yamaoka, Y ;
Nakamura, Y .
NATURE GENETICS, 2000, 24 (03) :245-250
[69]   Prostate-specific antigen expression is regulated by an upstream enhancer [J].
Schuur, ER ;
Henderson, GA ;
Kmetec, LA ;
Miller, JD ;
Lamparski, HG ;
Henderson, DR .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (12) :7043-7051
[70]   Cofactor dynamics and sufficiency in estrogen receptor-regulated transcription [J].
Shang, YF ;
Hu, X ;
DiRenzo, J ;
Lazar, MA ;
Brown, M .
CELL, 2000, 103 (06) :843-852