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Proc Natl Acad Sci U S A ; 66(3): 823-9, 1970 Jul.
Article in English | MEDLINE | ID: mdl-5269245

ABSTRACT

Two antimutagenic DNA polymerases of bacteriophage T4 markedly reduce transition mutagenesis by a variety of chemical mutagens. Spontaneous mutation and mutagenesis by 2-aminopurine, 5-bromodeoxyuridine, and thymine deprivation are strongly suppressed. Mutagenesis at G:C sites by ethyl methanesulfonate, and at A:T sites by nitrous acid, is moderately suppressed. Mutagenesis at G:C sites by hydroxylamine and by nitrous acid is not suppressed. These results support the notion that the indispensable DNA polymerase of bacteriophage T4 plays a crucial role in the selection of the correct base during DNA replication. The data also reveal that mutagenic specificities of chemical agents depend as much upon the characteristics of the enzymatic apparatus of DNA replication as they do upon the chemistry of primary mutational lesions.


Subject(s)
Coliphages/drug effects , DNA Nucleotidyltransferases/metabolism , Mutagens/antagonists & inhibitors , Mutation/drug effects , Bromodeoxyuridine/antagonists & inhibitors , Coliphages/enzymology , DNA Replication , DNA, Viral , Genetics, Microbial , Hydroxylamines/antagonists & inhibitors , Nitrites/antagonists & inhibitors , Purines/antagonists & inhibitors , Sulfonic Acids/antagonists & inhibitors
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