How to translate text using browser tools
25 January 2011 Murine Prkdc Polymorphisms Impact DNA-PKcs Function
Kristin M Fabre, Lila Ramaiah, Ryan C Dregalla, Christian Desaintes, Michael M Weil, Susan M Bailey, Robert L Ullrich
Author Affiliations +
Abstract

Polymorphic variants of DNA repair genes can increase the carcinogenic potential of exposure to ionizing radiation. Two single nucleotide polymorphisms (SNPs) in Prkdc, the gene encoding the DNA-dependent protein kinase catalytic subunit (DNA-PKcs), have been identified in BALB/c mice and linked to reduced DNA-PKcs activity and mammary cancer susceptibility. We examined three additional mouse strains to better define the roles of the BALB/c Prkdc SNPs (R2140C and M3844V). One is a congenic strain (C.B6) that has the C57BL/6 Prkdc allele on a BALB/c background, and the other is a congenic strain (B6.C) that has the BALB/c variant Prkdc allele on a C57BL/6 background. We also examined the LEWES mouse strain, which possesses only one of the BALB/c Prkdc SNPs (M3844V). Our results demonstrate that both Prkdc SNPs are responsible for deficient DNA-PKcs protein expression, DNA repair and telomere function, while the LEWES SNP affects only DNA-PKcs expression and repair capacity. These studies provide insight into the separation of function between the two BALB/c SNPs as well as direct evidence that SNPs positioned within Prkdc can significantly influence DNA-PKcs function involving DNA repair capacity, telomere end-capping, and potentially cancer susceptibility.

by Radiation Research Society
Kristin M Fabre, Lila Ramaiah, Ryan C Dregalla, Christian Desaintes, Michael M Weil, Susan M Bailey, and Robert L Ullrich "Murine Prkdc Polymorphisms Impact DNA-PKcs Function," Radiation Research 175(4), 493-500, (25 January 2011). https://doi.org/10.1667/RR2431.1
Received: 31 August 2010; Accepted: 1 November 2010; Published: 25 January 2011
RIGHTS & PERMISSIONS
Get copyright permission
Back to Top