XRCC1 interactions with multiple DNA glycosylases: A model for its recruitment to base excision repair

被引:137
作者
Campalans, A
Marsin, S
Nakabeppu, Y
O'Connor, TR
Boiteux, S
Radicella, JP
机构
[1] CEA, CNRS, UMR217, Dept Radiobiol & Radiopathol, F-92265 Fontenay Aux Roses, France
[2] Kyushu Univ, Med Inst Bioregulat, Dept Immunobiol & Neurosci, Fukuoka 8128582, Japan
[3] City Hope Natl Med Ctr, Beckman Res Inst, Div Biol, Duarte, CA 91010 USA
关键词
XRCC1; base excision repair; DNA glycosylases;
D O I
10.1016/j.dnarep.2005.04.014
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Repair of chemically modified bases in DNA is accomplished through base excision repair (BER). This pathway is initiated by a specific DNA glycosylase that recognizes and excises the altered base to yield an abasic (AP) site. After cleavage of the AP site by APEI, repair proceeds through re-synthesis and ligation steps. In mammalian cells, the XRCC1 protein. essential for the maintenance of genomic stability, is involved in both base excision and single-strand break repair, XRCC1 participates in the first step of BER by interacting with the human DNA glycosylases hOGG1 and NEIL1. To analyze the possibility of a general mechanism involving the interaction of XRCC1 with DNA glycosylases we used XRCC1 to pull-down DNA glycosylases activities from human cell extracts. XRCC1 co-purities with DNA glycosylase activities capable of excising hypoxanthine and dihydrothymine, in addition to 8-oxoguanine, but not uracil, Biochemical analyses with the purified proteins confirmed the interactions between XRCC1 and MPG, hNTH1 or hNEIL2. Furthermore, XRCC1 stimulates the activities of these enzymes. In vivo localization studies show that after genotoxic treatments these DNA glycosylases can be found associated with XRCC1 foci. Our results support a BER model in which XRCC1 is recruited to the repair of alkylated or oxidized bases by the enzyme recognizing the lesion. XRCC1 would then coordinate the subsequent enzymatic steps and modulate the activities of all the proteins involved, (c) 2005 Elsevier B.V. All tights reserved.
引用
收藏
页码:826 / 835
页数:10
相关论文
共 33 条
[11]   A requirement for PARP-1 for the assembly or stability of XRCC1 nuclear foci at sites of oxidative DNA damage [J].
El-Khamisy, SF ;
Masutani, M ;
Suzuki, H ;
Caldecott, KW .
NUCLEIC ACIDS RESEARCH, 2003, 31 (19) :5526-5533
[12]   Mammalian DNA base excision repair proteins: their interactions and role in repair of oxidative DNA damage [J].
Izumi, T ;
Wiederhold, LR ;
Roy, G ;
Roy, R ;
Jaiswal, A ;
Bhakat, KK ;
Mitra, S ;
Hazra, TK .
TOXICOLOGY, 2003, 193 (1-2) :43-65
[13]   Reconstitution of DNA base excision-repair with purified human proteins: Interaction between DNA polymerase beta and the XRCC1 protein [J].
Kubota, Y ;
Nash, RA ;
Klungland, A ;
Schar, P ;
Barnes, DE ;
Lindahl, T .
EMBO JOURNAL, 1996, 15 (23) :6662-6670
[14]   In situ analysis of repair processes for oxidative DNA damage in mammalian cells [J].
Lan, L ;
Nakajima, S ;
Oohata, Y ;
Takao, M ;
Okano, S ;
Masutani, M ;
Wilson, SH ;
Yasui, A .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2004, 101 (38) :13738-13743
[15]   Quality control by DNA repair [J].
Lindahl, T ;
Wood, RD .
SCIENCE, 1999, 286 (5446) :1897-1905
[16]   INSTABILITY AND DECAY OF THE PRIMARY STRUCTURE OF DNA [J].
LINDAHL, T .
NATURE, 1993, 362 (6422) :709-715
[17]   The protein kinase CK2 facilitates repair of chromosomal DNA single-strand breaks [J].
Loizou, JI ;
El-Khamisy, SF ;
Zlatanou, A ;
Moore, DJ ;
Chan, DW ;
Qin, J ;
Sarno, S ;
Meggio, F ;
Pinna, LA ;
Caldecott, KW .
CELL, 2004, 117 (01) :17-28
[18]   Biophysical characterization of human XRCC1 and its binding to damaged and undamaged DNA [J].
Mani, RS ;
Karimi-Busheri, F ;
Fanta, M ;
Caldecott, KW ;
Cass, CE ;
Weinfeld, M .
BIOCHEMISTRY, 2004, 43 (51) :16505-16514
[19]  
Marintchev A, 1999, NAT STRUCT BIOL, V6, P884
[20]   Role of XRCC1 in the coordination and stimulation of oxidative DNA damage repair initiated by the DNA glycosylase hOGG1 [J].
Marsin, S ;
Vidal, AE ;
Sossou, M ;
Ménissier-de Murcia, J ;
Le Page, F ;
Boiteux, S ;
de Murcia, G ;
Radicella, JP .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (45) :44068-44074