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Enhanced activity of adenine-DNA glycosylase (Myh) by apurinic/apyrimidinic endonuclease (Ape1) in mammalian base excision repair of an A/GO mismatch.
- Source :
-
Nucleic acids research [Nucleic Acids Res] 2001 Feb 01; Vol. 29 (3), pp. 743-52. - Publication Year :
- 2001
-
Abstract
- Adenine-DNA glycosylase MutY of Escherichia coli catalyzes the cleavage of adenine when mismatched with 7,8-dihydro-8-oxoguanine (GO), an oxidatively damaged base. The biological outcome is the prevention of C/G-->A/T transversions. The molecular mechanism of base excision repair (BER) of A/GO in mammals is not well understood. In this study we report stimulation of mammalian adenine-DNA glycosylase activity by apurinic/apyrimidinic (AP) endonuclease using murine homolog of MutY (Myh) and human AP endonuclease (Ape1), which shares 94% amino acid identity with its murine homolog Apex. After removal of adenine by the Myh glycosylase activity, intact AP DNA remains due to lack of an efficient Myh AP lyase activity. The study of wild-type Ape1 and its catalytic mutant H309N demonstrates that Ape1 catalytic activity is required for formation of cleaved AP DNA. It also appears that Ape1 stimulates Myh glycosylase activity by increasing formation of the Myh-DNA complex. This stimulation is independent of the catalytic activity of Ape1. Consequently, Ape1 preserves the Myh preference for A/GO over A/G and improves overall glycosylase efficiency. Our study suggests that protein-protein interactions may occur in vivo to achieve efficient BER of A/GO.
- Subjects :
- Amino Acid Sequence
Animals
Apurinic Acid metabolism
Base Pair Mismatch genetics
Cloning, Molecular
DNA genetics
DNA metabolism
DNA Damage
DNA Glycosylases
DNA, Complementary chemistry
DNA, Complementary genetics
DNA, Complementary isolation & purification
DNA-(Apurinic or Apyrimidinic Site) Lyase
Deoxyribonuclease IV (Phage T4-Induced)
Electrophoresis, Polyacrylamide Gel
Guanine metabolism
Mice
Molecular Sequence Data
N-Glycosyl Hydrolases metabolism
Protein Binding
Sequence Alignment
Sequence Analysis, DNA
Sequence Homology, Amino Acid
Substrate Specificity
Carbon-Oxygen Lyases metabolism
DNA Repair
Escherichia coli Proteins
Guanine analogs & derivatives
N-Glycosyl Hydrolases genetics
Subjects
Details
- Language :
- English
- ISSN :
- 1362-4962
- Volume :
- 29
- Issue :
- 3
- Database :
- MEDLINE
- Journal :
- Nucleic acids research
- Publication Type :
- Academic Journal
- Accession number :
- 11160897
- Full Text :
- https://doi.org/10.1093/nar/29.3.743