4.3 Article

Human NEIL3 is mainly a monofunctional DNA glycosylase removing spiroimindiohydantoin and guanidinohydantoin

Journal

DNA REPAIR
Volume 12, Issue 12, Pages 1159-1164

Publisher

ELSEVIER
DOI: 10.1016/j.dnarep.2013.04.026

Keywords

Oxidation; DNA damage; Base excision repair; DNA glycosylase; Human NEIL3; Mouse Neil3

Funding

  1. Research Council of Norway
  2. South-East Health Authority of Norway
  3. National Institutes of Health by the National Cancer Institute [R01 CA090689]

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Base excision repair is the major pathway for removal of oxidative DNA base damage. This pathway is initiated by DNA glycosylases, which recognize and excise damaged bases from DNA. In this work, we have purified the glycosylase domain (GD) of human DNA glycosylase NEIL3. The substrate specificity has been characterized and we have elucidated the catalytic mechanisms. GD NEIL3 excised the hydantoin lesions spiroiminodihydantoin (Sp) and guanidinohydantoin (Gh) in single-stranded (ss) and double-stranded (ds) DNA efficiently. NEIL3 also removed 5-hydroxy-2'-deoxycytidine (5OHC) and 5-hydroxy-2'-deoxyuridine (5OHU) in ssDNA, but less efficiently than hydantoins. Unlike NEIL1 and NEIL2, which possess a beta,delta-elimination activity, NEIL3 mainly incised damaged DNA by beta-elimination. Further, the base excision and strand incision activities of NEIL3 exhibited a non-concerted action, indicating that NEIL3 mainly operate as a monofunctional DNA glycosylase. The site-specific NEIL3 mutant V2P, however, showed a concerted action, suggesting that the N-terminal amino group in Val2 is critical for the monofunctional modus. Finally, we demonstrated that residue Lys81 is essential for catalysis. (C) 2013 The Authors. Published by Elsevier B.V. All rights reserved.

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