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Volumn 68, Issue , 2001, Pages 3-27
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The mechanism of switching among multiple BER pathways
a a a a |
Author keywords
[No Author keywords available]
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Indexed keywords
BACTERIAL PROTEIN;
CYCLINE;
DEOXYRIBONUCLEASE IV;
DNA;
DNA (APURINIC OR APYRIMIDINIC SITE) LYASE;
DNA DIRECTED DNA POLYMERASE BETA;
DNA FORMAMIDOPYRIMIDINE GLYCOSYLASE;
DNA GLYCOSYLTRANSFERASE;
FUNGAL DNA;
FUNGAL PROTEIN;
GLYCOSIDASE;
LYASE;
MUTAGENIC AGENT;
POLYDEOXYRIBONUCLEOTIDE SYNTHASE;
ANIMAL;
BIOLOGICAL MODEL;
CELL FREE SYSTEM;
CELL LINE;
CHEMISTRY;
CHO CELL;
CRICETULUS;
CYTOLOGY;
DNA ADDUCT;
DNA DAMAGE;
DNA REPAIR;
DNA REPLICATION;
DRUG EFFECT;
ENZYMOLOGY;
FIBROBLAST;
GENETICS;
HAMSTER;
MOUSE;
OXIDATION REDUCTION REACTION;
PHYSIOLOGY;
REVIEW;
SACCHAROMYCES CEREVISIAE;
TRANSGENIC MOUSE;
ANIMALS;
BACTERIAL PROTEINS;
CARBON-OXYGEN LYASES;
CELL LINE;
CELL-FREE SYSTEM;
CHO CELLS;
CRICETINAE;
CRICETULUS;
DEOXYRIBONUCLEASE IV (PHAGE T4-INDUCED);
DNA;
DNA ADDUCTS;
DNA DAMAGE;
DNA GLYCOSYLASES;
DNA LIGASES;
DNA POLYMERASE BETA;
DNA REPAIR;
DNA REPLICATION;
DNA, FUNGAL;
DNA-(APURINIC OR APYRIMIDINIC SITE) LYASE;
DNA-FORMAMIDOPYRIMIDINE GLYCOSYLASE;
FIBROBLASTS;
FUNGAL PROTEINS;
MICE;
MICE, TRANSGENIC;
MODELS, GENETIC;
MUTAGENS;
N-GLYCOSYL HYDROLASES;
OXIDATION-REDUCTION;
PROLIFERATING CELL NUCLEAR ANTIGEN;
SACCHAROMYCES CEREVISIAE;
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EID: 0035224951
PISSN: 00796603
EISSN: None
Source Type: Book Series
DOI: 10.1016/s0079-6603(01)68086-3 Document Type: Article |
Times cited : (87)
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References (75)
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