The Effects of Lycopene on the Methylation of the GSTP1 Promoter and Global Methylation in Prostatic Cancer Cell Lines PC3 and LNCaP

DNA (cytosine-5-) methylation silencing of GSTP1 function occurs in prostate adenocarcinoma (PCa). Previous studies have shown that there is an inverse relationship between dietary lycopene intake and the risk of PCa. However, it is unknown whether lycopene reactivates the tumor suppressor gene glut...

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Main Authors: Li-Juan Fu, Yu-Bin Ding, Lan-Xiang Wu, Chun-Jie Wen, Qiang Qu, Xue Zhang, Hong-Hao Zhou
Format: Article
Language:English
Published: Hindawi Limited 2014-01-01
Series:International Journal of Endocrinology
Online Access:http://dx.doi.org/10.1155/2014/620165
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spelling doaj-2adc215af2ae42b3baaa441b567024452020-11-24T20:50:54ZengHindawi LimitedInternational Journal of Endocrinology1687-83371687-83452014-01-01201410.1155/2014/620165620165The Effects of Lycopene on the Methylation of the GSTP1 Promoter and Global Methylation in Prostatic Cancer Cell Lines PC3 and LNCaPLi-Juan Fu0Yu-Bin Ding1Lan-Xiang Wu2Chun-Jie Wen3Qiang Qu4Xue Zhang5Hong-Hao Zhou6Institute of Life Sciences, Chongqing Medical University, No. 1 Yixueyuan Road, Chongqing 400016, ChinaInstitute of Life Sciences, Chongqing Medical University, No. 1 Yixueyuan Road, Chongqing 400016, ChinaInstitute of Life Sciences, Chongqing Medical University, No. 1 Yixueyuan Road, Chongqing 400016, ChinaInstitute of Life Sciences, Chongqing Medical University, No. 1 Yixueyuan Road, Chongqing 400016, ChinaPharmacogenetics Research Institute, Central South University, Changsha, Hunan 410078, ChinaInstitute of Life Sciences, Chongqing Medical University, No. 1 Yixueyuan Road, Chongqing 400016, ChinaInstitute of Life Sciences, Chongqing Medical University, No. 1 Yixueyuan Road, Chongqing 400016, ChinaDNA (cytosine-5-) methylation silencing of GSTP1 function occurs in prostate adenocarcinoma (PCa). Previous studies have shown that there is an inverse relationship between dietary lycopene intake and the risk of PCa. However, it is unknown whether lycopene reactivates the tumor suppressor gene glutathioneS-transferase-π (GSTP1) by demethylation of the hypermethylated CpGs that act to silence the GSTP1 promoter. Here, we demonstrated that lycopene treatment significantly decreased the methylation levels of the GSTP1 promoter and increased the mRNA and protein levels of GSTP1 in an androgen-independent PC-3 cell line. In contrast, lycopene treatment did not demethylate the GSTP1 promoter or increase GSTP1 expression in the androgen-dependent LNCaP cell line. DNA methyltransferase (DNMT) 3A protein levels were downregulated in PC-3 cells following lycopene treatment; however, DNMT1 and DNMT3B levels were unchanged. Furthermore, the long interspersed element (LINE-1) and short interspersed element ALU were not demethylated when treated by lycopene. In LNCaP cells, lycopene treatment did not affect any detected DNMT protein expression, and the methylation levels of LINE-1 and ALU were decreased. These results indicated that the protective effect of lycopene on the prostate is different between androgen-dependent and androgen-independent derived PCa cells. Further, in vivo studies should be conducted to confirm these promising results and to evaluate the potential role of lycopene in the protection of the prostate.http://dx.doi.org/10.1155/2014/620165
collection DOAJ
language English
format Article
sources DOAJ
author Li-Juan Fu
Yu-Bin Ding
Lan-Xiang Wu
Chun-Jie Wen
Qiang Qu
Xue Zhang
Hong-Hao Zhou
spellingShingle Li-Juan Fu
Yu-Bin Ding
Lan-Xiang Wu
Chun-Jie Wen
Qiang Qu
Xue Zhang
Hong-Hao Zhou
The Effects of Lycopene on the Methylation of the GSTP1 Promoter and Global Methylation in Prostatic Cancer Cell Lines PC3 and LNCaP
International Journal of Endocrinology
author_facet Li-Juan Fu
Yu-Bin Ding
Lan-Xiang Wu
Chun-Jie Wen
Qiang Qu
Xue Zhang
Hong-Hao Zhou
author_sort Li-Juan Fu
title The Effects of Lycopene on the Methylation of the GSTP1 Promoter and Global Methylation in Prostatic Cancer Cell Lines PC3 and LNCaP
title_short The Effects of Lycopene on the Methylation of the GSTP1 Promoter and Global Methylation in Prostatic Cancer Cell Lines PC3 and LNCaP
title_full The Effects of Lycopene on the Methylation of the GSTP1 Promoter and Global Methylation in Prostatic Cancer Cell Lines PC3 and LNCaP
title_fullStr The Effects of Lycopene on the Methylation of the GSTP1 Promoter and Global Methylation in Prostatic Cancer Cell Lines PC3 and LNCaP
title_full_unstemmed The Effects of Lycopene on the Methylation of the GSTP1 Promoter and Global Methylation in Prostatic Cancer Cell Lines PC3 and LNCaP
title_sort effects of lycopene on the methylation of the gstp1 promoter and global methylation in prostatic cancer cell lines pc3 and lncap
publisher Hindawi Limited
series International Journal of Endocrinology
issn 1687-8337
1687-8345
publishDate 2014-01-01
description DNA (cytosine-5-) methylation silencing of GSTP1 function occurs in prostate adenocarcinoma (PCa). Previous studies have shown that there is an inverse relationship between dietary lycopene intake and the risk of PCa. However, it is unknown whether lycopene reactivates the tumor suppressor gene glutathioneS-transferase-π (GSTP1) by demethylation of the hypermethylated CpGs that act to silence the GSTP1 promoter. Here, we demonstrated that lycopene treatment significantly decreased the methylation levels of the GSTP1 promoter and increased the mRNA and protein levels of GSTP1 in an androgen-independent PC-3 cell line. In contrast, lycopene treatment did not demethylate the GSTP1 promoter or increase GSTP1 expression in the androgen-dependent LNCaP cell line. DNA methyltransferase (DNMT) 3A protein levels were downregulated in PC-3 cells following lycopene treatment; however, DNMT1 and DNMT3B levels were unchanged. Furthermore, the long interspersed element (LINE-1) and short interspersed element ALU were not demethylated when treated by lycopene. In LNCaP cells, lycopene treatment did not affect any detected DNMT protein expression, and the methylation levels of LINE-1 and ALU were decreased. These results indicated that the protective effect of lycopene on the prostate is different between androgen-dependent and androgen-independent derived PCa cells. Further, in vivo studies should be conducted to confirm these promising results and to evaluate the potential role of lycopene in the protection of the prostate.
url http://dx.doi.org/10.1155/2014/620165
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