Kim Tae Moon, Son Mi Young, Dodds Sherry, Hu Lingchuan, Hasty Paul
Department of Molecular Medicine, Institute of Biotechnology, The Barshop Center of Aging, The University of Texas Health Science Center at San Antonio, 15355 Lambda Drive, San Antonio, TX 78245-3207, USA.
Department of Molecular Medicine, Institute of Biotechnology, The Barshop Center of Aging, The University of Texas Health Science Center at San Antonio, 15355 Lambda Drive, San Antonio, TX 78245-3207, USA.
Mutat Res. 2014 Aug-Sep;766-767:66-72. doi: 10.1016/j.mrfmmm.2014.06.003. Epub 2014 Jun 22.
BRCA2 is a tumor suppressor that maintains genomic integrity through double strand break (DSB) repair and replication fork protection. The BRC motifs and an exon 27-encoded domain (Ex27) of BRCA2 interact with the recombinase RAD51 to, respectively, facilitate the formation and stability of a RAD51 filament on single strand DNA. The BRC-RAD51 associations enable DSB repair while the Ex27-RAD51 association protects the nascent replication strand from MRE11-mediated degradation. MRE11 is a nuclease that facilitates the generation of 3' overhangs needed for homologous recombination (HR)-mediated DSB repair. Here we report the dynamics of replication fork maintenance in mouse embryonic stem (ES) cells deleted for Ex27 (brca2(lex1/lex2)) after exposure to hydroxyurea (HU) that depletes nucleotides. HU conditions were varied from mild to severe. Mild conditions induce an ATR-response to replication fork stalling while severe conditions induce a DNA-PKCS-response to replication fork collapse and a DSB. These responses were differentiated by replication protein A (RPA) phosphorylation. We found that Ex27 deletion reduced MRE11 localization to stalled, but not collapsed, replication forks and that Ex27-deletion caused a proportionately more severe phenotype with HU dose. Therefore, the BRCA2 exon 27 domain maintains chromosomal integrity at both stalled and collapsed replication forks consistent with involvement in both replication fork maintenance and double strand break repair.
BRCA2是一种肿瘤抑制因子,通过双链断裂(DSB)修复和复制叉保护来维持基因组完整性。BRCA2的BRC基序和第27外显子编码结构域(Ex27)与重组酶RAD51相互作用,分别促进RAD51细丝在单链DNA上的形成和稳定性。BRC-RAD51相互作用实现DSB修复,而Ex27-RAD51相互作用保护新生复制链免受MRE11介导的降解。MRE11是一种核酸酶,有助于产生同源重组(HR)介导的DSB修复所需的3'突出端。在这里,我们报告了在暴露于消耗核苷酸的羟基脲(HU)后,缺失Ex27(brca2(lex1/lex2))的小鼠胚胎干细胞(ES)中复制叉维持的动力学。HU条件从轻度到重度不等。轻度条件诱导对复制叉停滞的ATR反应,而重度条件诱导对复制叉崩溃和DSB的DNA-PKCS反应。这些反应通过复制蛋白A(RPA)磷酸化来区分。我们发现Ex27缺失减少了MRE11在停滞但未崩溃的复制叉上的定位,并且Ex27缺失导致随着HU剂量增加出现比例上更严重的表型。因此,BRCA2第27外显子结构域在停滞和崩溃的复制叉处均维持染色体完整性,这与参与复制叉维持和双链断裂修复一致。