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Clitocine Reversal of P-Glycoprotein Associated Multi-Drug Resistance through Down-Regulation of Transcription Factor NF-κB in R-HepG2 Cell Line

Multidrug resistance(MDR)is one of the major reasons for failure in cancer chemotherapy and its suppression may increase the efficacy of therapy. The human multidrug resistance 1 (MDR1) gene encodes the plasma membrane P-glycoprotein (P-gp) that pumps various anti-cancer agents out of the cancer cel...

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Autores principales: Sun, Jianguo, Yeung, Chilam Au, Co, Ngai Na, Tsang, Tsun Yee, Yau, Esmond, Luo, Kewang, Wu, Ping, Wa, Judy Chan Yuet, Fung, Kwok-Pui, Kwok, Tim-Tak, Liu, Feiyan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3425549/
https://www.ncbi.nlm.nih.gov/pubmed/22927901
http://dx.doi.org/10.1371/journal.pone.0040720
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author Sun, Jianguo
Yeung, Chilam Au
Co, Ngai Na
Tsang, Tsun Yee
Yau, Esmond
Luo, Kewang
Wu, Ping
Wa, Judy Chan Yuet
Fung, Kwok-Pui
Kwok, Tim-Tak
Liu, Feiyan
author_facet Sun, Jianguo
Yeung, Chilam Au
Co, Ngai Na
Tsang, Tsun Yee
Yau, Esmond
Luo, Kewang
Wu, Ping
Wa, Judy Chan Yuet
Fung, Kwok-Pui
Kwok, Tim-Tak
Liu, Feiyan
author_sort Sun, Jianguo
collection PubMed
description Multidrug resistance(MDR)is one of the major reasons for failure in cancer chemotherapy and its suppression may increase the efficacy of therapy. The human multidrug resistance 1 (MDR1) gene encodes the plasma membrane P-glycoprotein (P-gp) that pumps various anti-cancer agents out of the cancer cell. R-HepG2 and MES-SA/Dx5 cells are doxorubicin induced P-gp over-expressed MDR sublines of human hepatocellular carcinoma HepG2 cells and human uterine carcinoma MES-SA cells respectively. Herein, we observed that clitocine, a natural compound extracted from Leucopaxillus giganteus, presented similar cytotoxicity in multidrug resistant cell lines compared with their parental cell lines and significantly suppressed the expression of P-gp in R-HepG2 and MES-SA/Dx5 cells. Further study showed that the clitocine increased the sensitivity and intracellular accumulation of doxorubicin in R-HepG2 cells accompanying down-regulated MDR1 mRNA level and promoter activity, indicating the reversal effect of MDR by clitocine. A 5′-serial truncation analysis of the MDR1 promoter defined a region from position −450 to −193 to be critical for clitocine suppression of MDR1. Mutation of a consensus NF-κB binding site in the defined region and overexpression of NF-κB p65 could offset the suppression effect of clitocine on MDR1 promoter. By immunohistochemistry, clitocine was confirmed to suppress the protein levels of both P-gp and NF-κB p65 in R-HepG2 cells and tumors. Clitocine also inhibited the expression of NF-κB p65 in MES-SA/Dx5. More importantly, clitocine could suppress the NF-κB activation even in presence of doxorubicin. Taken together; our results suggested that clitocine could reverse P-gp associated MDR via down-regulation of NF-κB.
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spelling pubmed-34255492012-08-27 Clitocine Reversal of P-Glycoprotein Associated Multi-Drug Resistance through Down-Regulation of Transcription Factor NF-κB in R-HepG2 Cell Line Sun, Jianguo Yeung, Chilam Au Co, Ngai Na Tsang, Tsun Yee Yau, Esmond Luo, Kewang Wu, Ping Wa, Judy Chan Yuet Fung, Kwok-Pui Kwok, Tim-Tak Liu, Feiyan PLoS One Research Article Multidrug resistance(MDR)is one of the major reasons for failure in cancer chemotherapy and its suppression may increase the efficacy of therapy. The human multidrug resistance 1 (MDR1) gene encodes the plasma membrane P-glycoprotein (P-gp) that pumps various anti-cancer agents out of the cancer cell. R-HepG2 and MES-SA/Dx5 cells are doxorubicin induced P-gp over-expressed MDR sublines of human hepatocellular carcinoma HepG2 cells and human uterine carcinoma MES-SA cells respectively. Herein, we observed that clitocine, a natural compound extracted from Leucopaxillus giganteus, presented similar cytotoxicity in multidrug resistant cell lines compared with their parental cell lines and significantly suppressed the expression of P-gp in R-HepG2 and MES-SA/Dx5 cells. Further study showed that the clitocine increased the sensitivity and intracellular accumulation of doxorubicin in R-HepG2 cells accompanying down-regulated MDR1 mRNA level and promoter activity, indicating the reversal effect of MDR by clitocine. A 5′-serial truncation analysis of the MDR1 promoter defined a region from position −450 to −193 to be critical for clitocine suppression of MDR1. Mutation of a consensus NF-κB binding site in the defined region and overexpression of NF-κB p65 could offset the suppression effect of clitocine on MDR1 promoter. By immunohistochemistry, clitocine was confirmed to suppress the protein levels of both P-gp and NF-κB p65 in R-HepG2 cells and tumors. Clitocine also inhibited the expression of NF-κB p65 in MES-SA/Dx5. More importantly, clitocine could suppress the NF-κB activation even in presence of doxorubicin. Taken together; our results suggested that clitocine could reverse P-gp associated MDR via down-regulation of NF-κB. Public Library of Science 2012-08-22 /pmc/articles/PMC3425549/ /pubmed/22927901 http://dx.doi.org/10.1371/journal.pone.0040720 Text en © 2012 Sun et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Sun, Jianguo
Yeung, Chilam Au
Co, Ngai Na
Tsang, Tsun Yee
Yau, Esmond
Luo, Kewang
Wu, Ping
Wa, Judy Chan Yuet
Fung, Kwok-Pui
Kwok, Tim-Tak
Liu, Feiyan
Clitocine Reversal of P-Glycoprotein Associated Multi-Drug Resistance through Down-Regulation of Transcription Factor NF-κB in R-HepG2 Cell Line
title Clitocine Reversal of P-Glycoprotein Associated Multi-Drug Resistance through Down-Regulation of Transcription Factor NF-κB in R-HepG2 Cell Line
title_full Clitocine Reversal of P-Glycoprotein Associated Multi-Drug Resistance through Down-Regulation of Transcription Factor NF-κB in R-HepG2 Cell Line
title_fullStr Clitocine Reversal of P-Glycoprotein Associated Multi-Drug Resistance through Down-Regulation of Transcription Factor NF-κB in R-HepG2 Cell Line
title_full_unstemmed Clitocine Reversal of P-Glycoprotein Associated Multi-Drug Resistance through Down-Regulation of Transcription Factor NF-κB in R-HepG2 Cell Line
title_short Clitocine Reversal of P-Glycoprotein Associated Multi-Drug Resistance through Down-Regulation of Transcription Factor NF-κB in R-HepG2 Cell Line
title_sort clitocine reversal of p-glycoprotein associated multi-drug resistance through down-regulation of transcription factor nf-κb in r-hepg2 cell line
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3425549/
https://www.ncbi.nlm.nih.gov/pubmed/22927901
http://dx.doi.org/10.1371/journal.pone.0040720
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