Defective DNA Strand Break Repair after DNA Damage in Prostate Cancer Cells
Open Access
- 1 December 2004
- journal article
- Published by American Association for Cancer Research (AACR) in Cancer Research
- Vol. 64 (23) , 8526-8533
- https://doi.org/10.1158/0008-5472.can-04-1601
Abstract
Together with cell cycle checkpoint control, DNA repair plays a pivotal role in protecting the genome from endogenous and exogenous DNA damage. Although increased genetic instability has been associated with prostate cancer progression, the relative role of DNA double-strand break repair in malignant versus normal prostate epithelial cells is not known. In this study, we determined the RNA and protein expression of a series of DNA double-strand break repair genes in both normal (PrEC-epithelial and PrSC-stromal) and malignant (LNCaP, DU-145, and PC-3) prostate cultures. Expression of genes downstream of ATM after ionizing radiation-induced DNA damage reflected the p53 status of the cell lines. In the malignant prostate cell lines, mRNA and protein levels of the Rad51, Xrcc3, Rad52, and Rad54 genes involved in homologous recombination were elevated ∼2- to 5-fold in comparison to normal PrEC cells. The XRCC1, DNA polymerase-β and -δ proteins were also elevated. There were no consistent differences in gene expression relating to the nonhomologous end-joining pathway. Despite increased expression of DNA repair genes, malignant prostate cancer cells had defective repair of DNA breaks, alkali-labile sites, and oxidative base damage. Furthermore, after ionizing radiation and mitomycin C treatment, chromosomal aberration assays confirmed that malignant prostate cells had defective DNA repair. This discordance between expression and function of DNA repair genes in malignant prostate cancer cells supports the hypothesis that prostate tumor progression may reflect aberrant DNA repair. Our findings support the development of novel treatment strategies designed to reinstate normal DNA repair in prostate cancer cells.Keywords
This publication has 46 references indexed in Scilit:
- p53 protects from replication-associated DNA double-strand breaks in mammalian cellsOncogene, 2004
- Rad51 overexpression promotes alternative double-strand break repair pathways and genome instabilityOncogene, 2004
- Overexpression of mammalian Rad51 does not stimulate tumorigenesis while a dominant-negative Rad51 affects centrosome fragmentation, ploidy and stimulates tumorigenesis, in p53-defective CHO cellsOncogene, 2003
- Inactivation of the RAD51 recombination pathway stimulates UV-induced mutagenesis in mammalian cellsOncogene, 2002
- DNA Mismatch Repair Enzyme Activity and Gene Expression in Prostate CancerBiochemical and Biophysical Research Communications, 2001
- ATM&A Key Determinant of Multiple Cellular Responses to IrradiationActa Oncologica, 2001
- DNA damage-related gene expression as biomarkers to assess cellular response after gamma irradiation of a human lymphoblastoid cell lineOncogene, 2000
- Coordinate alterations in the expression of BRCA1, BRCA2, p300, and Rad51 in response to genotoxic and other stresses in human prostate cancer cellsThe Prostate, 1999
- Radioresistant MTp53-expressing rat embryo cell transformants exhibit increased DNA-dsb rejoining during exposure to ionizing radiationOncogene, 1998
- Antisense Inhibition of the RAD51 Enhances RadiosensitivityBiochemical and Biophysical Research Communications, 1996