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Volumn 415, Issue 6868, 2002, Pages 183-187
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Alternative nucleotide incision repair pathway for oxidative DNA damage
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Author keywords
[No Author keywords available]
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Indexed keywords
BIOSYNTHESIS;
DNA SEQUENCES;
ESCHERICHIA COLI;
GENETIC ENGINEERING;
OXIDATION;
MUTANTS;
ENZYMES;
DIHYDROURACIL;
DNA GLYCOSYLTRANSFERASE;
DNA POLYMERASE;
ENDONUCLEASE;
HYDROXYL GROUP;
NUCLEOTIDE;
PHOSPHATE;
PROTEIN NFO;
PYRIMIDINE DERIVATIVE;
REACTIVE OXYGEN METABOLITE;
THYMINE DERIVATIVE;
UNCLASSIFIED DRUG;
URACIL DERIVATIVE;
DNA;
3' UNTRANSLATED REGION;
5' UNTRANSLATED REGION;
ARTICLE;
BACTERIUM MUTANT;
CONTROLLED STUDY;
DNA DAMAGE;
DNA SYNTHESIS;
ENZYME MECHANISM;
ENZYME SUBSTRATE;
ESCHERICHIA COLI;
EXCISION REPAIR;
GENOTOXICITY;
HUMAN;
HUMAN CELL;
MOUSE;
MOUSE MUTANT;
NONHUMAN;
OXIDATIVE STRESS;
PRIORITY JOURNAL;
RADIOSENSITIVITY;
CARBON-OXYGEN LYASES;
DEOXYRIBONUCLEASE IV (PHAGE T4-INDUCED);
DIHYDROPYRIDINES;
DNA DAMAGE;
DNA REPAIR;
DNA, BACTERIAL;
DNA, FUNGAL;
DNA-(APURINIC OR APYRIMIDINIC SITE) LYASE;
ENDODEOXYRIBONUCLEASES;
ESCHERICHIA COLI;
ESCHERICHIA COLI PROTEINS;
EXODEOXYRIBONUCLEASES;
HUMANS;
NUCLEOTIDES;
OXIDATION-REDUCTION;
SACCHAROMYCES CEREVISIAE;
SACCHAROMYCES CEREVISIAE PROTEINS;
BACTERIA (MICROORGANISMS);
ESCHERICHIA COLI;
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EID: 0037049975
PISSN: 00280836
EISSN: None
Source Type: Journal
DOI: 10.1038/415183a Document Type: Article |
Times cited : (234)
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References (29)
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