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PMID: 15162792 Published · ppublish English Journal Article Review

A model for initial DNA lesion recognition by NER and MMR based on local conformational flexibility.

DNA repair ·Vol. 3 ·No. 5 ·2004-05-04 ·Pages 455-64

Isaacs RJ, Spielmann HP

Abstract

Initial recognition of DNA damage is the crucial but poorly understood first step in DNA repair by the human nucleotide excision repair(NER) and mismatch repair (MMR) systems. Failure by NER or MMR to recognize DNA damage threatens the genetic integrity of the organism and may play a role in carcinogenesis. Both NER and MMR recognize and repair a wide variety of structurally dissimilar lesions against the background of normal DNA. Previous studies have suggested that detection of thermodynamic destabilization of DNA caused by covalent damage and base mismatches is a potential mechanism by which repair pathways with broad specificity such as NER and MMR recognize their substrates. However, both NER and MMR respectively, repair a wide variety of stabilizing and destabilizing covalent DNA lesions and base pair mismatches. A common feature of lesions that are both thermodynamically stabilizing and destabilizing is the alteration of the local DNA flexibility (dynamics). In this review we describe the experimental evidence for altered dynamics from NMR and thermodynamic studies on normal and damaged DNA molecules with respect to recognition by NER and MMR. Based on these data, we propose a model for initial detection of lesions by both NER and MMR that occurs through an indirect readout mechanism of alternative DNA conformations induced by covalent damage and base mismatches.

MeSH Terms
Animals Base Pair Mismatch/genetics DNA/chemistry,genetics,metabolism DNA Damage/drug effects,genetics DNA Repair/drug effects,genetics,physiology Humans Models, Genetic Nucleic Acid Conformation
Chemicals
DNA
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Isaacs Richard J
Department of Molecular and Cellular Biochemistry, University of Kentucky, Lexington, KY 40536-0084, USA.
Spielmann H Peter
Article Info
Journal
DNA repair
Abbr.
DNA Repair (Amst)
ISSN
1568-7864
Published
2004-05-04
Pages
455-64
Language
English
Region
Netherlands
NLM ID
101139138
Subset
IM
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