Literature DB >> 10646870

Testosterone-repressed prostate message-2 is an antiapoptotic gene involved in progression to androgen independence in prostate cancer.

H Miyake1, C Nelson, P S Rennie, M E Gleave.   

Abstract

Although initially reported as an androgen-repressed gene in the rat prostate, the functional role of testosterone-repressed prostate message-2 (TRPM-2) in apoptosis remains undefined. Inhibition of castration-induced apoptosis by calcium channel blocker treatment in androgen-dependent Shionogi tumors resulted in the prevention of TRPM-2 gene up-regulation, suggesting that TRPM-2 is not directly androgen-repressed, but is regulated by apoptotic stimuli. The overexpression of the TRPM-2 gene in human androgen-dependent LNCaP prostate cancer cells by stable transfection rendered them highly resistant to androgen ablation in vivo. We then tested the efficacy of antisense TRPM-2 oligodeoxynucleotide (ODN) therapy in the Shionogi tumor model and demonstrated that the systemic administration of antisense TRPM-2 ODNs in mice bearing Shionogi tumors after castration resulted in a more rapid onset of apoptosis and time to complete regression, as well as a significant delay of emergence of androgen-independent recurrent tumors compared to control ODN treatment. Collectively, these findings illustrate that TRPM-2 is an antiapoptotic rather than an androgen-repressed gene that confers resistance to androgen ablation and thereby helps accelerate the progression to androgen independence.

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Year:  2000        PMID: 10646870

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   12.701


  53 in total

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Review 2.  Targeting anti-apoptotic genes upregulated by androgen withdrawal using antisense oligonucleotides to enhance androgen- and chemo-sensitivity in prostate cancer.

Authors:  Martin E Gleave; Toby Zellweger; Kim Chi; Hideaki Miyake; Satoshi Kiyama; Laura July; Simon Leung
Journal:  Invest New Drugs       Date:  2002-05       Impact factor: 3.850

Review 3.  Androgens and prostate cancer.

Authors:  Alan I So; Antonio Hurtado-Coll; Martin E Gleave
Journal:  World J Urol       Date:  2003-10-29       Impact factor: 4.226

4.  Induction of clusterin by AKT--role in cytoprotection against docetaxel in prostate tumor cells.

Authors:  Bin Zhong; David A Sallman; Danielle L Gilvary; Daniele Pernazza; Eva Sahakian; Dillon Fritz; Jin Q Cheng; Ioannis Trougakos; Sheng Wei; Julie Y Djeu
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Review 5.  Hormone-refractory prostate cancer: where are we going?

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Review 6.  Clusterin and chemoresistance.

Authors:  Julie Y Djeu; Sheng Wei
Journal:  Adv Cancer Res       Date:  2009       Impact factor: 6.242

7.  Targeting the cytoprotective chaperone, clusterin, for treatment of advanced cancer.

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Journal:  Clin Cancer Res       Date:  2010-02-09       Impact factor: 12.531

8.  Effect of Targeting Clusterin Using OGX-011 on Antitumor Activity of Temsirolimus in a Human Renal Cell Carcinoma Model.

Authors:  Masatomo Nishikawa; Hideaki Miyake; Martin Gleave; Masato Fujisawa
Journal:  Target Oncol       Date:  2017-02       Impact factor: 4.493

9.  Different altered stage correlative expression of high abundance acute-phase proteins in sera of patients with epithelial ovarian carcinoma.

Authors:  Yeng Chen; Boon-Kiong Lim; Onn H Hashim
Journal:  J Hematol Oncol       Date:  2009-08-27       Impact factor: 17.388

10.  Enhanced sensitivity to androgen withdrawal due to overexpression of interleukin-6 in androgen-dependent human prostate cancer LNCaP cells.

Authors:  T Terakawa; H Miyake; J Furukawa; S L Ettinger; M E Gleave; M Fujisawa
Journal:  Br J Cancer       Date:  2009-10-20       Impact factor: 7.640

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