Literature DB >> 16774937

NF-kappaB inhibition increases chemosensitivity to trichostatin A-induced cell death of Ki-Ras-transformed human prostate epithelial cells.

Osong Kwon1, Kyong A Kim, Sun Ok Kim, Ryong Ha, Won Keun Oh, Min Soo Kim, Hee Sik Kim, Gun Do Kim, Jong Wan Kim, Mira Jung, Cheorl Ho Kim, Jong Seog Ahn, Bo Yeon Kim.   

Abstract

Chemoresistance has been one of the major problems in anticancer therapy. In our effort to find a potential molecular target for overcoming the chemoresistance in prostate cancer, a promising anticancer drug trichostatin A (TSA) induced cell death was found to be compromised by enhanced NF-kappaB activation in 267B1/K-ras human prostate epithelial cancer cells. However, both the NF-kappaB activation and chemoresistance were reduced by pretreatment with proteasome inhibitor-I (ProI), accompanied by accumulations of both IkappaBalpha and p65/RelA (but not p50/NF-kappaB1) in the cytoplasm. Clonogenic cell survival and soft agar assays further confirmed the increased TSA chemosensitivity of 267B1/K-ras cells by ProI treatment. Moreover, dominant negative mutant of IKKbeta, IkappaBalpha and p65 enhanced the chemosensitization, too. Unexpectedly, using LY294002 and PD98059, phosphatidylinositol-3-kinase and mitogen-activated protein kinase were also implied in TSA chemoresistance through NF-kappaB activation, while these compounds had showed no effect on radiosensitization in the cells. On the other hand, together with TUNEL (terminal deoxynucleotidyl transferase-mediated dUTP nick end labeling) assay, activations of caspase-8 and caspase-3 by TSA and ProI were noticed, suggesting the involvement of apoptotic process in chemosensitization of 267B1/K-ras cells. Altogether, these results suggest that blocking the NF-kappaB activation pathway could be an efficient target for improving the TSA chemosensitization and applying to the development of anticancer therapeutics in Ki-Ras-overexpressing tumorigenic cells, including prostate cancer.

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Year:  2006        PMID: 16774937     DOI: 10.1093/carcin/bgl097

Source DB:  PubMed          Journal:  Carcinogenesis        ISSN: 0143-3334            Impact factor:   4.944


  10 in total

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Journal:  Cell Signal       Date:  2011-12-30       Impact factor: 4.315

2.  Midkine silencing enhances the anti-prostate cancer stem cell activity of the flavone apigenin: cooperation on signaling pathways regulated by ERK, p38, PTEN, PARP, and NF-κB.

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3.  Anti-inflammatory activity of soy and tea in prostate cancer prevention.

Authors:  Anna Hsu; Tammy M Bray; Emily Ho
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Authors:  A Kim; O S Kwon; S O Kim; L He; E Y Bae; M S Lee; S J Jeong; J H Shim; D Y Yoon; C H Kim; A Moon; K E Kim; J S Ahn; B Y Kim
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Review 10.  Targeting Crosstalk between Nrf-2, NF-κB and Androgen Receptor Signaling in Prostate Cancer.

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  10 in total

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