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Cellular repair mechanism of 5-formyluracil
Author(s) -
Akira Masaoka,
Makoto Kobayashi,
Hiroaki Terato,
Yoshihiko Ohyama,
Hiroshi Ide
Publication year - 1999
Publication title -
nucleic acids symposium series
Language(s) - Uncategorized
Resource type - Journals
eISSN - 1746-8272
pISSN - 0261-3166
DOI - 10.1093/nass/42.1.291
Subject(s) - dna glycosylase , dna repair , dna damage , chemistry , base excision repair , dna mismatch repair , dna damage repair , dna , enzyme , oxidative damage , biochemistry , microbiology and biotechnology , biology
5-Formyluracil (fU) is an oxidative DNA base damage. This damage has been suggested to be mutagenic and but enzymatic repair of the damage is little known. In this study, repair enzymes that recognize fU have been studied. Kinetic analysis of the repair activity of E. coli 3-methyladenine DNA glycosylase II (AlkA) showed that fU was removed by AlkA with the efficiency comparable to 7-methylguanine. We also examined the participation of the methyl-directed mismatch repair system. The affinity of MutS to the fU:G mispair was essentially similar to that of the T:G mispair that was most efficiently recognized by the MutSLH system. These results suggest two distinct repair pathways of fU in E. coli.

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