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Epigenetic DNA methylation of antioxidative stress regulator NRF2 in human prostate cancer.


ABSTRACT: Epigenetic control of NRF2, a master regulator of many critical antioxidative stress defense genes in human prostate cancer (CaP), is unknown. Our previous animal study found decreased Nrf2 expression through promoter CpG methylation/histone modifications during prostate cancer progression in TRAMP mice. In this study, we evaluated CpG methylation of human NRF2 promoter in 27 clinical prostate cancer samples and in LNCaP cells using MAQMA analysis and bisulfite genomic DNA sequencing. Prostate cancer tissue microarray (TMA) containing normal and prostate cancer tissues was studied by immunohistochemistry. Luciferase reporter assay using specific human NRF2 DNA promoter segments and chromatin immunoprecipitation (ChIP) assay against histone modifying proteins were performed in LNCaP cells. Three specific CpG sites in the NRF2 promoter were found to be hypermethylated in clinical prostate cancer samples (BPH

SUBMITTER: Khor TO 

PROVIDER: S-EPMC4256109 | biostudies-literature | 2014 Dec

REPOSITORIES: biostudies-literature

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Epigenetic DNA methylation of antioxidative stress regulator NRF2 in human prostate cancer.

Khor Tin Oo TO   Fuentes Francisco F   Shu Limin L   Paredes-Gonzalez Ximena X   Yang Anne Yuqing AY   Liu Yue Y   Smiraglia Dominic J DJ   Yegnasubramanian Srinivasan S   Nelson William G WG   Kong Ah-Ng Tony AN  

Cancer prevention research (Philadelphia, Pa.) 20140929 12


Epigenetic control of NRF2, a master regulator of many critical antioxidative stress defense genes in human prostate cancer (CaP), is unknown. Our previous animal study found decreased Nrf2 expression through promoter CpG methylation/histone modifications during prostate cancer progression in TRAMP mice. In this study, we evaluated CpG methylation of human NRF2 promoter in 27 clinical prostate cancer samples and in LNCaP cells using MAQMA analysis and bisulfite genomic DNA sequencing. Prostate c  ...[more]

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