DocumentCode
3377819
Title
Relationship between methylation status of multi-drug resistance protein (MRP) and multi-drug resistance in lung cancer cell lines
Author
Li, Hong ; Zhu, Yi-fei ; Zheng, Shi-Ying ; Jiang, Dong
Author_Institution
Dept. of Geriatrics, Suzhou Univ., Suzhou, China
fYear
2009
fDate
13-14 Dec. 2009
Firstpage
548
Lastpage
551
Abstract
Objective: To study the relationship between the methylation status of multi-drug resistance protein (MRP) gene and the expression of its mRNA and protein in lung cancer cell lines. Methods: Human lung cell line WI-38.1ung adenocarcinoma cell line SPCA-1 and its drug-resistant cells induced by different concentrations of doxorubicin were treated with restriction endonuclease Eco47III. The methylation status of MRP was examined by PCR,and the expressions of its mRNA and protein were evaluated by in situ hybridization and immunohistochemistry. Resuits: MRP gene promoter region of WI-38 cells was in hypermethylation status.but the promoter region of MRP in SPCA-1 cells and their resistant derivatives induced by different concentrations of doxorubicin were in hypomethylation status.There were Significant differences in the expression of MRP mRNA among WI-38 cell line. SPCA-1 cells and their drug-resistan t derivatives induced by different concentration of doxorubicin. Consistently. MRP immunostaining presented similar significant differences. Conclusion: The promoter region of MRP in SPCA-1 lung adenocarcinoma cells was in hypomethylation status. The hypomethylation status of regulatory region of MRP promoter is an important structural basis that can increase the activity of transcription and results in the development of drug resistance in lung cancer.
Keywords
cancer; cellular biophysics; drugs; genetics; lung; proteins; MRP; PCR; doxorubicin; gene; hypermethylation status; hypomethylation status; immunohistochemistry; in situ hybridization; lung adenocarcinoma cell line SPCA-1; lung cancer cell lines; lung cell line WI-38; mRNA expression; multidrug resistance protein; restriction endonuclease Eco47III; Cancer; Lungs; Materials requirements planning; Proteins; Lung cancer; Methylation Multi-drug resistance(MDR); Multi-drug resistance protein(MRP);
fLanguage
English
Publisher
ieee
Conference_Titel
BioMedical Information Engineering, 2009. FBIE 2009. International Conference on Future
Conference_Location
Sanya
Print_ISBN
978-1-4244-4690-2
Electronic_ISBN
978-1-4244-4692-6
Type
conf
DOI
10.1109/FBIE.2009.5405779
Filename
5405779
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