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B cell translocation gene 2 enhances susceptibility of HeLa cells to doxorubicin-induced oxidative damage.

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dc.contributor.authorLim, YB-
dc.contributor.authorPark, TJ-
dc.contributor.authorLim, IK-
dc.date.accessioned2010-12-16T06:45:56Z-
dc.date.available2010-12-16T06:45:56Z-
dc.date.issued2008-
dc.identifier.issn0021-9258-
dc.identifier.urihttp://repository.ajou.ac.kr/handle/201003/627-
dc.description.abstractBTG2/TIS21/PC3 (B cell translocation gene 2) has been known as a p53 target gene and functions as a tumor suppressor in carcinogenesis of thymus, prostate, kidney, and liver. Although it has been known that the expression of BTG2/TIS21/PC3 is induced during chemotherapy-mediated apoptosis in cancer cells, a role of BTG2/TIS21/PC3 in cell death remains to be elucidated. In this study, the mechanism and role of BTG2 involved in the enhancement of doxorubicin (DOXO)-induced cell death were examined. Treatment of HeLa cells with DOXO revealed apoptotic phenomena, such as chromatin condensation and cleavage of poly(ADP-ribose) polymerase and lamin A/C with concomitant increase of BTG2/TIS21/PC3 expression. Employing infections of Ad-TIS21 virus and lentivirus with short hairpin RNA to BTG2, the effect of BTG2/TIS21/PC3 on the DOXO-induced apoptosis of HeLa cells and liver cancer cells was evaluated. Not only short hairpin RNA-BTG2 but also N-acetyl-L-cysteine significantly reduced the DOXO-induced HeLa cell death and generation of H2O2. Moreover, forced expression of BTG2/TIS21/PC3 using adenoviral vector augmented DOXO-induced cancer cell death concomitantly with increase of manganese-superoxide dismutase but not catalase, CuZnSOD, and glutathione peroxidase 1. The increased apoptosis by forced expression of BTG2/TIS21/PC3 could be inhibited by N-acetyl-L-cysteine and polyethylene glycol-catalase. These results therefore suggest that BTG2/TIS21/PC3 works as an enhancer of DOXO-induced cell death via accumulation of H2O2 by up-regulating manganese-superoxide dismutase without any other antioxidant enzymes. In summary, BTG2/TIS21/PC3 enhances cancer cell death by accumulating H2O2 via imbalance of the antioxidant enzymes in response to chemotherapy.-
dc.language.isoen-
dc.subject.MESHAcetylcysteine-
dc.subject.MESHAntibiotics, Antineoplastic-
dc.subject.MESHApoptosis-
dc.subject.MESHCatalase-
dc.subject.MESHChromatin-
dc.subject.MESHDoxorubicin-
dc.subject.MESHFree Radical Scavengers-
dc.subject.MESHGene Expression Regulation, Enzymologic-
dc.subject.MESHGene Expression Regulation, Neoplastic-
dc.subject.MESHGenes, Tumor Suppressor-
dc.subject.MESHGlutathione Peroxidase-
dc.subject.MESHHela Cells-
dc.subject.MESHHumans-
dc.subject.MESHHydrogen Peroxide-
dc.subject.MESHImmediate-Early Proteins-
dc.subject.MESHLamin Type A-
dc.subject.MESHLiver Neoplasms-
dc.subject.MESHOxidative Stress-
dc.subject.MESHPoly(ADP-ribose) Polymerases-
dc.subject.MESHSuperoxide Dismutase-
dc.subject.MESHTumor Suppressor Protein p53-
dc.subject.MESHTumor Suppressor Proteins-
dc.titleB cell translocation gene 2 enhances susceptibility of HeLa cells to doxorubicin-induced oxidative damage.-
dc.typeArticle-
dc.identifier.pmid18840609-
dc.identifier.urlhttps://www.ncbi.nlm.nih.gov/pmc/articles/PMC2662249/-
dc.contributor.affiliatedAuthor임, 영빈-
dc.contributor.affiliatedAuthor박, 태준-
dc.contributor.affiliatedAuthor임, 인경-
dc.type.localJournal Papers-
dc.identifier.doi10.1074/jbc.M804255200-
dc.citation.titleThe Journal of biological chemistry-
dc.citation.volume283-
dc.citation.number48-
dc.citation.date2008-
dc.citation.startPage33110-
dc.citation.endPage33118-
dc.identifier.bibliographicCitationThe Journal of biological chemistry, 283(48). : 33110-33118, 2008-
dc.identifier.eissn1083-351X-
dc.relation.journalidJ000219258-
Appears in Collections:
Journal Papers > Research Organization > BK21
Journal Papers > School of Medicine / Graduate School of Medicine > Biochemistry & Molecular Biology
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