The role of DNA polymerase ζ in benzo[a]pyrene-induced mutagenesis in the mouse lung.


Journal

Mutagenesis
ISSN: 1464-3804
Titre abrégé: Mutagenesis
Pays: England
ID NLM: 8707812

Informations de publication

Date de publication:
31 05 2021
Historique:
received: 24 11 2020
accepted: 02 02 2021
pubmed: 6 2 2021
medline: 18 12 2021
entrez: 5 2 2021
Statut: ppublish

Résumé

DNA polymerase zeta (Polζ) is a heterotetramer composed of the catalytic subunit Rev3l, Rev7 and two subunits of Polδ (PolD2/Pol31 and PolD3/Pol32), and this polymerase exerts translesion DNA synthesis (TLS) in yeast. Because Rev3l knockout results in embryonic lethality in mice, the functions of Polζ need further investigation in vivo. Then, we noted the two facts that substitution of leucine 979 of yeast Rev3l with methionine reduces Polζ replication fidelity and that reporter gene transgenic rodents are able to provide the detailed mutation status. Here, we established gpt delta mouse knocked in the constructed gene encoding methionine instead of leucine at residue 2610 of Rev3l (Rev3l L2610M gpt delta mice), to clarify the role of Polζ in TLS of chemical-induced bulky DNA adducts in vivo. Eight-week-old gpt delta mice and Rev3l L2610M gpt delta mice were treated with benzo[a]pyrene (BaP) at 0, 40, 80, or 160 mg/kg via single intraperitoneal injection. At necropsy 31 days after treatment, lungs were collected for reporter gene mutation assays. Although the gpt mutant frequency was significantly increased by BaP in both mouse genotypes, it was three times higher in Rev3l L2610M gpt delta than gpt delta mice after treatment with 160 mg/kg BaP. The frequencies of G:C base substitutions and characteristic complex mutations were significantly increased in Rev3l L2610M gpt delta mice compared with gpt delta mice. The BaP dose-response relationship suggested that Polζ plays a central role in TLS when protective mechanisms against BaP mutagenesis, such as error-free TLS, are saturated. Overall, Polζ may incorporate incorrect nucleotides at the sites opposite to BaP-modified guanines and extend short DNA sequences from the resultant terminal mismatches only when DNA is heavily damaged.

Identifiants

pubmed: 33544859
pii: 6129306
doi: 10.1093/mutage/geab007
doi:

Substances chimiques

DNA Adducts 0
Benzo(a)pyrene 3417WMA06D
DNA 9007-49-2
Alanine Transaminase EC 2.6.1.2
DNA polymerase zeta EC 2.7.7.-
DNA-Directed DNA Polymerase EC 2.7.7.7

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

155-164

Informations de copyright

© The Author(s) 2021. Published by Oxford University Press on behalf of the UK Environmental Mutagen Society.All rights reserved. For permissions, please e-mail: journals.permissions@oup.com.

Auteurs

Yuji Ishii (Y)

Division of Pathology, National Institute of Health Sciences, Tonomachi, Kawasaki-shi, Kawasaki-ku, Kanagawa, Japan.

Shinji Takasu (S)

Division of Pathology, National Institute of Health Sciences, Tonomachi, Kawasaki-shi, Kawasaki-ku, Kanagawa, Japan.

Petr Grúz (P)

Division of Genetics and Mutagenesis, National Institute of Health Sciences, Tonomachi, Kawasaki-shi, Kawasaki-ku, Kanagawa, Japan.

Kenichi Masumura (K)

Division of Genetics and Mutagenesis, National Institute of Health Sciences, Tonomachi, Kawasaki-shi, Kawasaki-ku, Kanagawa, Japan.

Kumiko Ogawa (K)

Division of Pathology, National Institute of Health Sciences, Tonomachi, Kawasaki-shi, Kawasaki-ku, Kanagawa, Japan.

Takehiko Nohmi (T)

Division of Pathology, National Institute of Health Sciences, Tonomachi, Kawasaki-shi, Kawasaki-ku, Kanagawa, Japan.

Takashi Umemura (T)

Division of Pathology, National Institute of Health Sciences, Tonomachi, Kawasaki-shi, Kawasaki-ku, Kanagawa, Japan.
Faculty of Animal Health Technology, Yamazaki University of Animal Health Technology, Minami-osawa, Hachihoji, Tokyo, Japan.

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Classifications MeSH