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Depurination of N7-Methylguanine by DNA Glycosylase AlkD Is Dependent on the DNA Backbone
- Source :
- Biochemistry. 52:7363-7365
- Publication Year :
- 2013
- Publisher :
- American Chemical Society (ACS), 2013.
-
Abstract
- DNA glycosylase AlkD excises N7-methylguanine (7mG) by a unique but unknown mechanism, in which the damaged nucleotide is positioned away from the protein and the phosphate backbone is distorted. Here, we show by methylphosphonate substitution that a phosphate proximal to the lesion has a significant effect on the rate enhancement of 7mG depurination by the enzyme. Thus, instead of a conventional mechanism whereby protein side chains participate in N-glycosidic bond cleavage, AlkD remodels the DNA into an active site composed exclusively of DNA functional groups that provide the necessary chemistry to catalyze depurination.
- Subjects :
- Models, Molecular
Guanine
DNA Repair
Protein Conformation
DNA repair
Stereochemistry
Crystallography, X-Ray
Biochemistry
Article
Catalysis
DNA Glycosylases
chemistry.chemical_compound
Protein structure
Catalytic Domain
Humans
Nucleotide
chemistry.chemical_classification
biology
Active site
DNA
chemistry
Purines
DNA glycosylase
biology.protein
Depurination
Subjects
Details
- ISSN :
- 15204995 and 00062960
- Volume :
- 52
- Database :
- OpenAIRE
- Journal :
- Biochemistry
- Accession number :
- edsair.doi.dedup.....6ebe155b60f3efc90bf416784caedb82
- Full Text :
- https://doi.org/10.1021/bi401195r