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ScharerDavid Orlando

Scharer, Orlando D.
Schärer Lab.
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Structural basis for the excision repair of alkylation-damaged DNA

Author(s)
Labahn, JorgScharer, Orlando D.Long, AlexanderEzazNikpay, KhosroVerdine, Gregory L.Ellenberger, Tom E.
Issued Date
1996-07
DOI
10.1016/S0092-8674(00)80103-8
URI
https://scholarworks.unist.ac.kr/handle/201301/21226
Fulltext
http://www.sciencedirect.com/science/article/pii/S0092867400801038
Citation
CELL, v.86, no.2, pp.321 - 329
Abstract
Base-excision DNA repair proteins that target alkylation damage act on a variety of seemingly dissimilar adducts, yet fail to recognize other closely related lesions. The 1.8 Angstrom crystal structure of the monofunctional DNA glycosylase AlkA (E. coli 9-methyladenine-DNA glycosylase II) reveals a large hydrophobic cleft unusually rich in aromatic residues. An Asp residue projecting into this cleft is essential for catalysis, and it governs binding specificity for mechanism-based inhibitors. We propose that AlkA recognizes electron-deficient methylated bases through pi-donor/acceptor interactions involving the electron-rich aromatic cleft. Remarkably, AlkA is similar in fold and active site location to the bifunctional glycosylase/lyase endonuclease III, suggesting the two may employ fundamentally related mechanisms for base excision
Publisher
CELL PRESS
ISSN
0092-8674

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