SUBSTRATE-SPECIFICITY OF THE ESCHERICHIA-COLI FPG PROTEIN (FORMAMIDOPYRIMIDINE DNA GLYCOSYLASE) - EXCISION OF PURINE LESIONS IN DNA PRODUCED BY IONIZING-RADIATION OR PHOTOSENSITIZATION

被引:586
作者
BOITEUX, S
GAJEWSKI, E
LAVAL, J
DIZDAROGLU, M
机构
[1] NATL INST STAND & TECHNOL, CHEM SCI & TECHNOL LAB, GAITHERSBURG, MD 20899 USA
[2] INST GUSTAVE ROUSSY, REPARAT LESIONS RADIO & CHIMIOINDUITES GRP,CNRS, URA 158,INSERM, F-94805 VILLEJUIF, FRANCE
关键词
D O I
10.1021/bi00116a016
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
We have investigated the excision of a variety of modified bases from DNA by the Escherichia coli Fpg protein (formamidopyrimidine-DNA glycosylase) [Boiteux, S., O'Connor, T. R., Lederer, F., Gouyette, A., & Laval, J. (1990) J. Biol. Chem. 265, 3916-3922]. DNA used as a substrate was modified either by exposure to ionizing radiation or by photosensitization using visible light in the presence of methylene blue (MB). The technique of gas chromatography/mass spectrometry, which can unambiguously identify and quantitate pyrimidine- and purine-derived lesions in DNA, was used for analysis of hydrolyzed and derivatized DNA samples. Thirteen products resulting from pyrimidines and purines were detected in gamma-irradiated DNA, whereas only the formation of 2,6-diamino-hydroxy-5-formamidopyrimidine (FapyGua) and 8-hydroxyguanine (8-OH-Gua) was observed in visible light/MB-treated DNA. Analysis of gamma-irradiated DNA after incubation with the Fpg protein followed by precipitation revealed that the Fpg protein significantly excised 4,6-diamino-5-formamidopyrimidine (FapyAde), FapyGua, and 8-OH-Gua. The excision of a small but detectable amount of 8-hydroxyadenine was also observed. The detection of these products in the supernatant fractions of the same samples confirmed their excision by the enzyme. Nine pyrimidine-derived lesions were not excised. The Fpg protein also excised FapyGua and 8-OH-Gua from visible light/MB-treated DNA. The presence of these products in the supernatant fractions confirmed their excision. The results suggest that one of the biological roles of the Fpg protein, which is present in bacteria as well as in mammalian cells, is the repair of DNA damage caused by free radicals or by other oxygen-derived species such as singlet oxygen. The Fpg protein appears to be specific for recognition of imidazole ring opened purines and 8-hydroxypurines in DNA and may complement pyrimidine-specific enzymes in repair of DNA damage in vivo.
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页码:106 / 110
页数:5
相关论文
共 48 条
[21]   CHARACTERIZATION OF FREE RADICAL-INDUCED BASE DAMAGE IN DNA AT BIOLOGICALLY RELEVANT LEVELS [J].
DIZDAROGLU, M ;
BERGTOLD, DS .
ANALYTICAL BIOCHEMISTRY, 1986, 156 (01) :182-188
[22]   CHEMICAL DETERMINATION OF FREE RADICAL-INDUCED DAMAGE TO DNA [J].
DIZDAROGLU, M .
FREE RADICAL BIOLOGY AND MEDICINE, 1991, 10 (3-4) :225-242
[24]   DNA DAMAGE BY OXYGEN RADICALS AND EXCITED-STATE SPECIES - A COMPARATIVE-STUDY USING ENZYMATIC PROBES INVITRO [J].
EPE, B ;
MUTZEL, P ;
ADAM, W .
CHEMICO-BIOLOGICAL INTERACTIONS, 1988, 67 (1-2) :149-165
[25]   METHYLENE-BLUE PLUS LIGHT MEDIATES 8-HYDROXYGUANINE FORMATION IN DNA [J].
FLOYD, RA ;
WEST, MS ;
ENEFF, KL ;
SCHNEIDER, JE .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1989, 273 (01) :106-111
[26]   QUANTITATIVE MEASUREMENT OF RADIATION-INDUCED BASE PRODUCTS IN DNA USING GAS-CHROMATOGRAPHY MASS-SPECTROMETRY [J].
FUCIARELLI, AF ;
WEGHER, BJ ;
GAJEWSKI, E ;
DIZDAROGLU, M ;
BLAKELY, WF .
RADIATION RESEARCH, 1989, 119 (02) :219-231
[27]   UVRABC NUCLEASE COMPLEX REPAIRS THYMINE GLYCOL, AN OXIDATIVE DNA-BASE DAMAGE [J].
KOW, YW ;
WALLACE, SS ;
VANHOUTEN, B .
MUTATION RESEARCH, 1990, 235 (02) :147-156
[28]   PHYSIOLOGICAL-PROPERTIES AND REPAIR OF APURINIC APYRIMIDINIC SITES AND IMIDAZOLE RING-OPENED GUANINES IN DNA [J].
LAVAL, J ;
BOITEUX, S ;
OCONNOR, TR .
MUTATION RESEARCH, 1990, 233 (1-2) :73-79
[29]  
LAVAL J, 1990, REPAIR MECHANISMS TH, P25
[30]   INVOLVEMENT OF POLYCYCLIC AROMATIC-HYDROCARBONS AND REDUCED OXYGEN RADICALS IN CARCINOGENESIS .5. ROLE OF SUPEROXIDE IN DEOXYRIBONUCLEIC-ACID STRAND SCISSION [J].
LESKO, SA ;
LORENTZEN, RJ ;
TSO, POP .
BIOCHEMISTRY, 1980, 19 (13) :3023-3028