Title of article
Combining structural and bioinformatics methods for the analysis of functionally important residues in DNA glycosylases,
Author/Authors
Dmitry O. Zharkov، نويسنده , , Arthur P. Grollman and Samuel H. Wilson، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2002
Pages
10
From page
1254
To page
1263
Abstract
An essential function of DNA glycosylases is the recognition and excision of damaged bases in DNA, thereby preserving genomic integrity. Lesion recognition is a multistep process, which is only partially revealed by structural analysis of the catalytically competent complex. The functional role of additional residues can be predicted by combining structural data with analysis of amino acid conservation. The following postulate underlies this approach: if a family or superfamily can be broken into subgroups with different substrate specificities, residues highly conserved between these subgroups represent those important for enzyme catalysis and structure maintenance while residues highly conserved within a subgroup but not between subgroups represent residues important for substrate specificity. We review the bioinformatics approach used for this quantitative analysis and describe its application to the Nth superfamily and Fpg family of DNA glycosylases. These results serve as a starting point in planning site-directed mutagenesis experiments to elucidate the functional role of similar and dissimilar residues in DNA repair and other proteins.
Keywords
DNA damage , sequence alignment , DNA glycosylase , Substrate specificity
Journal title
Free Radical Biology and Medicine
Serial Year
2002
Journal title
Free Radical Biology and Medicine
Record number
519171
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