APE1 overexpression in XRCC1-deficient cells complements the defective repair of oxidative single strand breaks but increases genomic instability

被引:40
作者
Sossou, M
Flohr-Beckhaus, C
Schulz, I
Daboussi, F
Epe, B
Radicella, JP
机构
[1] CEA, CNRS, UMR217, Dept Radiobiol & Radiopathol, F-92265 Fontenay Aux Roses, France
[2] Johannes Gutenberg Univ Mainz, Inst Pharm, D-55128 Mainz, Germany
关键词
D O I
10.1093/nar/gki173
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
XRCC1 protein is essential for mammalian viability and is required for the efficient repair of single strand breaks (SSBs) and damaged bases in DNA. XRCC1-deficient cells are genetically unstable and sensitive to DNA damaging agents. XRCC1 has no known enzymatic activity and is thought to act as a scaffold protein for both SSB and base excision repair activities. To further define the defects leading to genetic instability in XRCC1-deficient cells, we overexpressed the AP endonuclease APE1, shown previously to interact with and be stimulated by XRCC1. Here, we report that the overexpression of APE1 can compensate for the impaired capability of XRCC1-deficient cells to repair SSBs induced by oxidative DNA damage, both in vivo and in whole-cell extracts. We show that, for this kind of damage, the repair of blocked DNA ends is rate limiting and can be performed by APE1. Conversely, APE1 overproduction resulted in a 3-fold increase in the sensitivity of XRCC1-deficient cells to an alkylating agent, most probably due to the accumulation of SSBs. Finally, the overproduction of APE1 results in increases of 40% in the frequency of micronuclei and 33% in sister chromatid exchanges of XRCC1 (-) cells. These data suggest that the spontaneous generation of AP sites could be at the origin of the SSBs responsible for the spontaneous genetic instability characteristic of XRCC1-deficient cells.
引用
收藏
页码:298 / 306
页数:9
相关论文
共 49 条
[1]   Protein-protein interactions during mammalian DNA single-strand break repair [J].
Caldecott, KW .
BIOCHEMICAL SOCIETY TRANSACTIONS, 2003, 31 :247-251
[2]   XRCC1 polypeptide interacts with DNA polymerase beta and possibly poly(ADP-ribose) polymerase, and DNA ligase III is a novel molecular 'nick-sensor' in vitro [J].
Caldecott, KW ;
Aoufouchi, S ;
Johnson, P ;
Shall, S .
NUCLEIC ACIDS RESEARCH, 1996, 24 (22) :4387-4394
[3]   Mammalian DNA single-strand break repair: an X-ra(y)ted affair [J].
Caldecott, KW .
BIOESSAYS, 2001, 23 (05) :447-455
[4]   XRCC1 and DNA strand break repair [J].
Caldecott, KW .
DNA REPAIR, 2003, 2 (09) :955-969
[5]   Characterization of the XRCC1-DNA ligase III complex in vitro and its absence from mutant hamster cells [J].
Caldecott, KW ;
Tucker, JD ;
Stanker, LH ;
Thompson, LH .
NUCLEIC ACIDS RESEARCH, 1995, 23 (23) :4836-4843
[6]   Overexpression of DNA polymerase β in cell results in a mutator phenotype and a decreased sensitivity to anticancer drugs [J].
Canitrot, Y ;
Cazaux, C ;
Fréchet, M ;
Bouayadi, K ;
Lesca, C ;
Salles, B ;
Hoffmann, JS .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1998, 95 (21) :12586-12590
[7]   INDUCTION AND REPAIR OF DNA SINGLE-STRAND BREAKS IN EM9 MUTANT CHO CELLS TREATED WITH HYDROGEN-PEROXIDE [J].
CANTONI, O ;
MURRAY, D ;
MEYN, RE .
CHEMICO-BIOLOGICAL INTERACTIONS, 1987, 63 (01) :29-38
[8]   Removal by human apurinic/apyrimidinic endonuclease 1 (Ape 1) and Escherichia coli exonuclease III of 3′-phosphoglycolates from DNA treated with neocarzinostatin, calicheamicin, and γ-radiation [J].
Chaudhry, MA ;
Dedon, PC ;
Wilson, DM ;
Demple, B ;
Weinfeld, M .
BIOCHEMICAL PHARMACOLOGY, 1999, 57 (05) :531-538
[9]   AP endonuclease and poly(ADP-ribose) polymerase-1 interact with the same base excision repair intermediate [J].
Cistulli, C ;
Lavrik, OI ;
Prasad, R ;
Hou, E ;
Wilson, SH .
DNA REPAIR, 2004, 3 (06) :581-591
[10]  
DEMPLE B, 1994, ANNU REV BIOCHEM, V63, P915, DOI 10.1146/annurev.biochem.63.1.915