Cellular pathways for DNA repair and damage tolerance of formaldehyde-induced DNA-protein crosslinks

被引:99
作者
de Graaf, Bendert [1 ]
Clore, Adam [1 ]
McCullough, Amanda K. [1 ]
机构
[1] Oregon Hlth & Sci Univ, Dept Mol & Med Genet, Ctr Res Occupat & Environm Toxicol, Portland, OR 97239 USA
关键词
DNA repair; Homologous recombination; Nucleotide excision repair; DNA-protein crosslinks; Formaldehyde; NUCLEOTIDE EXCISION-REPAIR; SACCHAROMYCES-CEREVISIAE; MAMMALIAN-CELLS; TOPOISOMERASE-II; UVRABC NUCLEASE; DEFICIENT; ROLES; YEAST; INDUCTION; CYCLE;
D O I
10.1016/j.dnarep.2009.06.007
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Although it is well established that DNA-protein crosslinks are formed as a consequence of cellular exposure to agents such as formaldehyde, transplatin, ionizing and ultraviolet radiation, the biochemical pathways that promote cellular survival via repair or tolerance of these lesions are poorly understood. To investigate the mechanisms that function to limit DNA-protein crosslink-induced cytotoxicity, the Saccharomyces cerevisiae non-essential gene deletion library was screened for increased sensitivity to formaldehyde exposure. Following low dose, chronic exposure, strains containing deletions in genes mediating homologous recombination showed the greatest sensitivity, while under the same exposure conditions, deletions in genes associated with nucleotide excision repair conferred only low to moderate sensitivities. However, when the exposure regime was changed to a high dose acute (short-term) formaldehyde treatment, the genes that conferred maximal survival switched to the nucleotide excision repair pathway, with little contribution of the homologous recombination genes. Data are presented which suggest that following acute formaldehyde exposure, repair and/or tolerance of DNA-protein crosslinks proceeds via formation of nucleotide excision repair-dependent single-strand break intermediates and without a detectable accumulation of double-strand breaks. These data clearly demonstrate a differential pathway response to chronic versus acute formaldehyde exposures and may have significance and implications for risk extrapolation in human exposure studies. (C) 2009 Elsevier B.V. All rights reserved.
引用
收藏
页码:1207 / 1214
页数:8
相关论文
共 23 条
[1]   Nucleotide excision repair eliminates unique DNA-protein cross-links from mammalian cells [J].
Baker, David J. ;
Wuenschell, Gerald ;
Xia, Liqun ;
Termini, John ;
Bates, Steven E. ;
Riggs, Arthur D. ;
O'Connor, Timothy R. .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2007, 282 (31) :22592-22604
[2]   Mms22p protects Saccharomyces cerevisiae from DNA damage induced by topoisomerase II [J].
Baldwin, EL ;
Berger, AC ;
Corbett, AH ;
Osheroff, N .
NUCLEIC ACIDS RESEARCH, 2005, 33 (03) :1021-1030
[3]   DNA interstrand cross-link repair in the Saccharomyces cerevisiae cell cycle:: Overlapping roles for PSO2 (SNM1) with MutS factors and EXO1 during S phase [J].
Barber, LJ ;
Ward, TA ;
Hartley, JA ;
McHugh, PJ .
MOLECULAR AND CELLULAR BIOLOGY, 2005, 25 (06) :2297-2309
[4]   Interstrand crosslink repair: can XPF-ERCC1 be let off the hook? [J].
Bergstralh, Daniel T. ;
Sekelsky, Jeff .
TRENDS IN GENETICS, 2008, 24 (02) :70-76
[5]   Mechanistically distinct roles for Sgs1p in checkpoint activation and replication fork maintenance [J].
Bjergbaek, L ;
Cobb, JA ;
Tsai-Pflugfelder, M ;
Gasser, SM .
EMBO JOURNAL, 2005, 24 (02) :405-417
[6]   REPAIR OF TRANS-PT(II)DIAMMINEDICHLORIDE DNA PROTEIN CROSSLINKS IN NORMAL AND EXCISION-DEFICIENT HUMAN-CELLS [J].
FORNACE, AJ ;
SERES, DS .
MUTATION RESEARCH, 1982, 94 (02) :277-284
[7]   A CELL CYCLE-ASSOCIATED PATHWAY FOR REPAIR OF DNA PROTEIN CROSS-LINKS IN MAMMALIAN-CELLS [J].
GANTT, R .
MUTATION RESEARCH, 1987, 183 (01) :75-87
[8]   S-cerevisiae has three pathways for DNA interstrand crosslink repair [J].
Grossmann, KF ;
Ward, AM ;
Matkovic, ME ;
Folias, AE ;
Moses, RE .
MUTATION RESEARCH-DNA REPAIR, 2001, 487 (3-4) :73-83
[9]   Genome-wide generation of yeast gene deletion strains [J].
Kelly, DE ;
Lamb, DC ;
Kelly, SL .
COMPARATIVE AND FUNCTIONAL GENOMICS, 2001, 2 (04) :236-242
[10]   The role of DNA double-strand breaks in spontaneous homologous recombination in S. cerevisiae [J].
Lettier, Gaelle ;
Feng, Qi ;
de Mayolo, Adriana Antunez ;
Erdeniz, Naz ;
Reid, Robert J. D. ;
Lisby, Michael ;
Mortensen, Uffe H. ;
Rothstein, Rodney .
PLOS GENETICS, 2006, 2 (11) :1773-1786