Literature DB >> 29704992

Opposing roles of Y-family DNA polymerases in lipid peroxide mutagenesis at the hisG46 target in the Ames test.

Petr Grúz1, Masatomi Shimizu2, Masami Yamada3, Kei-Ichi Sugiyama4, Masamitsu Honma4.   

Abstract

DNA polymerases play a key role in mutagenesis by performing translesion DNA synthesis (TLS). The Y-family of DNA polymerases comprises several evolutionarily conserved families, specializing in TLS of different DNA adducts. Exocyclic etheno and propano DNA adducts are among the most common endogenous DNA lesions induced by lipid peroxidation reactions triggered by oxidative stress. We have investigated the participation of two enterobacterial representatives of the PolIV and PolV branches of Y-family DNA polymerases in mutagenesis by two model lipid peroxidation derived genotoxins, glyoxal and crotonaldehyde. Mutagenesis by the ethano adduct (glyoxal-derived) and the propano adduct (crontonaldehyde-derived) at the GC target in the Ames test depended exclusively on PolV type DNA polymerases such as PolRI. In contrast, PolIV suppressed glyoxal and, even more, crotonaldehyde mutagenesis, as detected by enzyme overexpression and gene knockout approaches. We propose that DNA polymerase IV, which is the mammalian DNA polymerase κ ortholog, acts as a housekeeper protecting the genome from lipoxidative stress.
Copyright © 2018 Elsevier B.V. All rights reserved.

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Keywords:  Ames test; Lipid peroxide; Y-family DNA polymerase

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Year:  2018        PMID: 29704992     DOI: 10.1016/j.mrgentox.2018.04.003

Source DB:  PubMed          Journal:  Mutat Res Genet Toxicol Environ Mutagen        ISSN: 1383-5718            Impact factor:   2.873


  1 in total

1.  Effect of episomally encoded DNA polymerases on chemically induced mutagenesis at the hisG46 target in Ames test.

Authors:  Petr Grúz; Masatomi Shimizu; Kei-Ichi Sugiyama; Masami Yamada; Masamitsu Honma
Journal:  Genes Environ       Date:  2020-03-24
  1 in total

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