Mutagenesis and Repair of γ-Radiation- and Radical-Induced Tandem DNA Lesions

Author:

Basu Ashis K.1ORCID,Colis Laureen C.12,Bacurio Jan Henric T.13

Affiliation:

1. Department of Chemistry, University of Connecticut, Storrs, CT 06269, USA

2. Analytical Development, Molecular Biology, Spark Therapeutics, Inc., Philadelphia, PA 19104, USA

3. In Vitro Molecular Pharmacology, Alexion Pharmaceuticals, Lexington, MA 02421, USA

Abstract

Ionizing radiation induces many different types of DNA lesions. But one of its characteristics is to produce complex DNA damage, of which tandem DNA damage has received much attention, owing to its promise of distinctive biological properties. Oxidative stresses in response to inflammation in tissues and metal-catalyzed reactions that result in generation of radicals also form these DNA lesions. In this minireview, we have summarized the formation of the tandem lesions as well as the replication and repair studies carried out on them after site-specific synthesis. Many of these lesions are resistant to the traditional base excision repair, so that they can only be repaired by the nucleotide excision repair pathway. They also block DNA replication and, when lesion bypass occurs, it may be significantly error-prone. Some of these tandem DNA lesions may contribute to ageing, neurological diseases, and cancer.

Funder

National Institute of Health

Publisher

MDPI AG

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