Author:
Masumura Kenichi,Ando Tomoko,Ukai Akiko,Fujiwara Sho,Yokose Shigeo,You Xinyue,Suzuki Takayoshi,Hayashi Hiroyuki,Nohmi Takehiko,Takagi Hisayoshi,Honma Masamitsu
Abstract
Abstract
Background
Gene mutation assays in transgenic rodents are useful tools to investigate in vivo mutagenicity in a target tissue. Using a lambda EG10 transgene containing reporter genes, gpt delta transgenic mice and rats have been developed to detect point mutations and deletions. The transgene is integrated in the genome and can be rescued through an in vitro packaging reaction. However, the packaging efficiency is lower in gpt delta rats than in mice, because of the transgene in gpt delta rats being heterozygous and in low copy number. To improve the packaging efficiency, we herein describe a newly developed homozygous gpt delta rat strain.
Results
The new gpt delta rat has a Wistar Hannover background and has been successfully maintained as homozygous for the transgene. The packaging efficiency in the liver was 4 to 8 times higher than that of existing heterozygous F344 gpt delta rats. The frequency of gpt point mutations significantly increased in the liver and bone marrow of N-nitroso-N-ethylurea (ENU)- and benzo[a]pyrene (BaP)-treated rats. Spi− deletion frequencies significantly increased in the liver and bone marrow of BaP-treated rats but not in ENU-treated rats. Whole genome sequencing analysis identified ≥ 30 copies of lambda EG10 transgenes integrated in rat chromosome 1.
Conclusions
The new homozygous gpt delta rat strain showed a higher packaging efficiency, and could be useful for in vivo gene mutation assays in rats.
Funder
JSPS KAKENHI
Health and Labour Sciences Research Grant
Publisher
Springer Science and Business Media LLC
Subject
Environmental Science (miscellaneous),Genetics,Social Psychology
Cited by
4 articles.
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