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Genotoxicity of diphenyl diselenide in bacteria and yeast

Authors :
Rosa, Renato Moreira
Sulzbacher, Krisley
Picada, Jaqueline Nascimento
Roesler, Rafael
Saffi, Jenifer
Brendel, Martin
Henriques, João Antonio Pêgas
Source :
Mutation Research - Genetic Toxicology & Environmental Mutagenesis. Oct2004, Vol. 563 Issue 2, p107-115. 9p.
Publication Year :
2004

Abstract

Diphenyl diselenide (DPDS) is an electrophilic reagent used in the synthesis of a variety of pharmacologically active organic selenium compounds. This may increase the risk of human exposure to the chemical at the workplace. We have determined its mutagenic potential in the Salmonella/microsome assay and used the yeast Saccharomyces cerevisiae to assay for putative genotoxicity, recombinogenicity and to determine whether DNA damage produced by DPDS is repairable. Only in exponentially growing cultures was DPDS able to induce frameshift mutations in S. typhimurium and haploid yeast and to increase crossing over and gene conversion frequencies in diploid strains of S. cerevisiae. Thus, DPDS presents a behavior similar to that of an intercalating agent. Mutants defective in excision-resynthesis repair (rad3, rad1), in error-prone repair (rad6) and in recombinational repair (rad52) showed higher than WT-sensitivity to DPDS. It appears that this compound is capable of inducing single and/or double strand breaks in DNA. An epistatic interaction was shown between rad3-e5 and rad52-1 mutant alleles, indicating that excision-resynthesis and strand-break repair may possess common steps in the repair of DNA damage induced by DPDS. DPDS was able to enhance the mutagenesis induced by oxidative mutagens in bacteria. N-acetylcysteine, a glutathione biosynthesis precursor, prevented mutagenesis induced by DPDS in yeast. We have shown that DPDS is a weak mutagen which probably generates DNA strand breaks through both its intercalating action and pro-oxidant effect. [Copyright &y& Elsevier]

Details

Language :
English
ISSN :
13835718
Volume :
563
Issue :
2
Database :
Academic Search Index
Journal :
Mutation Research - Genetic Toxicology & Environmental Mutagenesis
Publication Type :
Academic Journal
Accession number :
14376253
Full Text :
https://doi.org/10.1016/j.mrgentox.2004.06.006