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  4. A dominant-negative mutant of androgen receptor coregulator ARA54 inhibits androgen receptor-mediated prostate cancer growth
 
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A dominant-negative mutant of androgen receptor coregulator ARA54 inhibits androgen receptor-mediated prostate cancer growth

Journal
Journal of Biological Chemistry
Journal Volume
277
Journal Issue
7
Pages
4609-4617
Date Issued
2002
Author(s)
Miyamoto H.
Rahman M.
Takatera H.
Kang H.-Y.
Yeh S.
HONG-CHIANG CHANG  
Nishimura K.
Fujimoto N.
Chang C.
DOI
10.1074/jbc.M108312200
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-0037085249&doi=10.1074%2fjbc.M108312200&partnerID=40&md5=e8b03450818f8d46c2011ec977e21600
https://scholars.lib.ntu.edu.tw/handle/123456789/542011
Abstract
The ligand-bound androgen receptor (AR) regulates target genes via a mechanism involving coregulators such as androgen receptor-associated 54 (ARA54). We investigated whether the interruption of the AR coregulator function could lead to down-regulation of AR activity. Using in vitro mutagenesis and a yeast two-hybrid screening assay, we have isolated a mutant ARA54 (mt-ARA54) carrying a point mutation at amino acid 472 changing a glutamic acid to lysine, which acts as a dominant-negative inhibitor of AR transactivation. In transient transfection assays of prostate cancer cell lines, the mt-ARA54 suppressed endogenous mutated AR-mediated and exogenous wild-type AR-mediated transactivation in LNCaP and PC-3 cells, respectively. In DU145 cells, the mt-ARA54 suppressed exogenous ARA54 but not other coregulators, such as ARA55-enhanced or SRC-1-enhanced AR transactivation. In the LNCaP cells stably transfected with the plasmids encoding the mt-ARA54 under the doxycycline inducible system, the overexpression of the mt-ARA54 inhibited cell growth and endogenous expression of prostate-specific antigen. Mammalian two-hybrid assays further demonstrated that the mt-ARA54 can disrupt the interaction between wild-type ARA54 molecules, suggesting that ARA54 dimerization or oligomerization may play an essential role in the enhancement of AR transactivation. Together, our results demonstrate that a dominant-negative AR coregulator can suppress AR transactivation and cell proliferation in prostate cancer cells. Further studies may provide a new therapeutic approach for blocking AR-mediated prostate cancer growth.
SDGs

[SDGs]SDG3

Type
journal article

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