Analyses of mutational patterns induced by formaldehyde and acetaldehyde reveal similarity to a common mutational signature

Author:

Thapa Mahanish J12,Fabros Reena M12,Alasmar Salma3,Chan Kin12ORCID

Affiliation:

1. Department of Biochemistry, Microbiology and Immunology, University of Ottawa , Ottawa, ON K1H 8M5, Canada

2. Ottawa Institute of Systems Biology, University of Ottawa , Ottawa, ON K1H 8M5, Canada

3. Biopharmaceutical Sciences Undergraduate Program, University of Ottawa , Ottawa, ON K1N 6N5, Canada

Abstract

Abstract Formaldehyde and acetaldehyde are reactive small molecules produced endogenously in cells as well as being environmental contaminants. Both of these small aldehydes are classified as human carcinogens, since they are known to damage DNA and exposure is linked to cancer incidence. However, the mutagenic properties of formaldehyde and acetaldehyde remain incompletely understood, at least in part because they are relatively weak mutagens. Here, we use a highly sensitive yeast genetic reporter system featuring controlled generation of long single-stranded DNA regions to show that both small aldehydes induced mutational patterns characterized by predominantly C/G → A/T, C/G → T/A, and T/A → C/G substitutions, each in similar proportions. We observed an excess of C/G → A/T transversions when compared to mock-treated controls. Many of these C/G → A/T transversions occurred at TC/GA motifs. Interestingly, the formaldehyde mutational pattern resembles single base substitution signature 40 from the Catalog of Somatic Mutations in Cancer. Single base substitution signature 40 is a mutational signature of unknown etiology. We also noted that acetaldehyde treatment caused an excess of deletion events longer than 4 bases while formaldehyde did not. This latter result could be another distinguishing feature between the mutational patterns of these simple aldehydes. These findings shed new light on the characteristics of 2 important, commonly occurring mutagens.

Funder

Engineering Research Council of Canada Discovery

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology

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