Potential role for the BLM helicase in recombinational repair via a conserved interaction with RAD51

被引:239
作者
Wu, L [1 ]
Davies, SL [1 ]
Levitt, NC [1 ]
Hickson, ID [1 ]
机构
[1] Univ Oxford, John Radcliffe Hosp, Weatherall Inst Mol Med, Imperial Canc Res Fund Labs, Oxford OX3 9DS, England
关键词
D O I
10.1074/jbc.M009471200
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
Bloom's syndrome (BS) is an autosomal recessive disorder that predisposes individuals to a wide range of cancers. The gene mutated in BS, BLM, encodes a member of the RecQ family of DNA helicases. The precise role played by these enzymes in the cell remains to be determined. However, genome-wide hyper-recombination is a feature of many RecQ helicase-deficient cells. In eukaryotes, a central step in homologous recombination is catalyzed by the RAD51 protein. In response to agents that induce DNA double-strand breaks, RAD51 accumulates in nuclear foci that are thought to correspond to sites of recombinational repair. Here, we report that purified BLM and human RAD51 interact in vitro and in vivo, and that residues in the N- and C terminal domains of BLM can independently mediate this interaction. Consistent with these observations, BLM localizes to a subset of RAD51 nuclear foci in normal human cells. Moreover, the number of BLM foci and the extent to which ELM and RAD51 foci co-localize increase in response to ionizing radiation. Nevertheless, the formation of RAD51 foci does not require functional BLM. Indeed, in untreated BS cells, an abnormally high proportion of the cells contain RAD51 nuclear foci. Exogenous expression of BLM markedly reduces the fraction of cells containing RAD51 foci, The interaction between BLM and RAD51 appears to have been evolutionarily conserved since the C-terminal domain of Sgs1, the Saccharomyces cerevisiae homologue of BLM, interacts with yeast Rad51, Furthermore, genetic analysis reveals that the SGS1 and RAD51 genes are epistatic indicating that they operate in a common pathway. Potential roles for BLM in the RAD51 recombinational repair pathway are discussed.
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页码:19375 / 19381
页数:7
相关论文
共 46 条
[1]   Human Rad51 protein promotes ATP-dependent homologous pairing and strand transfer reactions in vitro [J].
Baumann, P ;
Benson, FE ;
West, SC .
CELL, 1996, 87 (04) :757-766
[2]   Binding specificity determines polarity of DNA unwinding by the Sgs1 protein of S-cerevisiae [J].
Bennett, RJ ;
Keck, JL ;
Wang, JC .
JOURNAL OF MOLECULAR BIOLOGY, 1999, 289 (02) :235-248
[3]   PURIFICATION AND CHARACTERIZATION OF THE HUMAN RAD51 PROTEIN, AN ANALOG OF ESCHERICHIA-COLI RECA [J].
BENSON, FE ;
STASIAK, A ;
WEST, SC .
EMBO JOURNAL, 1994, 13 (23) :5764-5771
[4]   Werner's syndrome protein (WRN) migrates Holliday junctions and co-localizes with RPA upon replication arrest [J].
Constantinou, A ;
Tarsounas, M ;
Karow, JK ;
Brosh, RM ;
Bohr, VA ;
Hickson, ID ;
West, SC .
EMBO REPORTS, 2000, 1 (01) :80-84
[5]   The importance of repairing stalled replication forks [J].
Cox, MM ;
Goodman, MF ;
Kreuzer, KN ;
Sherratt, DJ ;
Sandler, SJ ;
Marians, KJ .
NATURE, 2000, 404 (6773) :37-41
[6]   Cell cycle regulation of the endogenous wild type Bloom's syndrome DNA helicase [J].
Dutertre, S ;
Ababou, M ;
Onclercq, R ;
Delic, J ;
Chatton, B ;
Jaulin, C ;
Amor-Guéret, M .
ONCOGENE, 2000, 19 (23) :2731-2738
[7]   THE BLOOMS-SYNDROME GENE-PRODUCT IS HOMOLOGOUS TO RECQ HELICASES [J].
ELLIS, NA ;
GRODEN, J ;
YE, TZ ;
STRAUGHEN, J ;
LENNON, DJ ;
CIOCCI, S ;
PROYTCHEVA, M ;
GERMAN, J .
CELL, 1995, 83 (04) :655-666
[8]   Homologous recombination is responsible for cell death in the absence of the Sgs1 and Srs2 helicases [J].
Gangloff, S ;
Soustelle, C ;
Fabre, F .
NATURE GENETICS, 2000, 25 (02) :192-194
[9]   THE YEAST TYPE-I TOPOISOMERASE TOP3 INTERACTS WITH SGS1, A DNA HELICASE HOMOLOG - A POTENTIAL EUKARYOTIC REVERSE GYRASE [J].
GANGLOFF, S ;
MCDONALD, JP ;
BENDIXEN, C ;
ARTHUR, L ;
ROTHSTEIN, R .
MOLECULAR AND CELLULAR BIOLOGY, 1994, 14 (12) :8391-8398
[10]   BLOOMS SYNDROME .3. ANALYSIS OF CHROMOSOME ABERRATION CHARACTERISTIC OF THIS DISORDER [J].
GERMAN, J ;
CRIPPA, LP ;
BLOOM, D .
CHROMOSOMA, 1974, 48 (04) :361-366