Frequencies and spectra of aflatoxin B1-induced mutations in liver genomes of NEIL1-deficient mice as revealed by duplex sequencing

Author:

Minko Irina G1ORCID,Luzadder Michael M1ORCID,Vartanian Vladimir L1,Rice Sean P M12ORCID,Nguyen Megan M3,Sanchez-Contreras Monica3,Van Phu4,Kennedy Scott R3ORCID,McCullough Amanda K15,Lloyd R Stephen15

Affiliation:

1. Oregon Institute of Occupational Health Sciences, Oregon Health & Science University , Portland , OR , USA

2. School of Public Health, Oregon Health & Science University - Portland State University , Portland , OR , USA

3. Department of Laboratory Medicine and Pathology, University of Washington , Seattle , WA , USA

4. TwinStrand Biosciences, Inc. , Seattle , WA , USA

5. Department of Molecular and Medical Genetics, Oregon Health & Science University , Portland , OR , USA

Abstract

Abstract Increased risk for the development of hepatocellular carcinoma (HCC) is driven by a number of etiological factors including hepatitis viral infection and dietary exposures to foods contaminated with aflatoxin-producing molds. Intracellular metabolic activation of aflatoxin B1 (AFB1) to a reactive epoxide generates highly mutagenic AFB1-Fapy-dG adducts. Previously, we demonstrated that repair of AFB1-Fapy-dG adducts can be initiated by the DNA glycosylase NEIL1 and that male Neil1−/− mice were significantly more susceptible to AFB1-induced HCC relative to wild-type mice. To investigate the mechanisms underlying this enhanced carcinogenesis, WT and Neil1−/− mice were challenged with a single, 4 mg/kg dose of AFB1 and frequencies and spectra of mutations were analyzed in liver DNAs 2.5 months post-injection using duplex sequencing. The analyses of DNAs from AFB1-challenged mice revealed highly elevated mutation frequencies in the nuclear genomes of both males and females, but not the mitochondrial genomes. In both WT and Neil1−/− mice, mutation spectra were highly similar to the AFB1-specific COSMIC signature SBS24. Relative to wild-type, the NEIL1 deficiency increased AFB1-induced mutagenesis with concomitant elevated HCCs in male Neil1−/− mice. Our data establish a critical role of NEIL1 in limiting AFB1-induced mutagenesis and ultimately carcinogenesis.

Funder

National Institutes of Health

Division of Consumer and Business Services of the State of Oregon

Oregon Community Foundation

Publisher

Oxford University Press (OUP)

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