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Dichloroacetic acid reduces Ha-ras codon 61 mutations in liver tumors from female B6C3F1 mice
M Schroeder1, A B DeAngelo, M J Mass
1Curriculum in Toxicology, University of North Carolina, Chapel Hill 27514, USA.
Abstract:
Dichloroacetic acid (DCA), a disinfection by-product of chlorination found in drinking water, is a hepatocarcinogenic in the B6C3F1 mouse. Previous studies have shown that DCA does not significantly alter the incidence of Ha-ras codon 61 mutations in male mouse liver carcinomas from that observed in spontaneous tumors (approximately 50% have Ha-ras mutations) but it alters the proportions of mutations that occur in Ha-ras codon 61. Twenty-two tumors were produced in female B6C3F1 mice after treatment with 3.5 g DCA per liter of drinking water over a period of 104 weeks. To detect potential Ha-ras mutations in the liver tumor tissue of female B6C3F1 mice, genomic DNA was isolated from tumors that had been frozen. The polymerase chain reaction (PCR) and single-stranded conformational polymorphism (SSCP) was used to screen tumor DNA for mutations in Ha-ras exon 2. In DNA from liver tumors in female B6C3F1 mice induced by DCA-treatment we found only one mutation in exon 2 among the 22 tumors analyzed (4.5%). Direct-sequencing of exon 2 revealed a CAA to CTA transversion in Ha-ras codon 61. The result of this study indicates that tumor formation in DCA-treated female B6C3F1 mice is, therefore, not associated with a mutationally activated Ha-ras codon 61. This result differs from previous results obtained in male B6C3F1 mice.
Insights
Dichloroacetic acid (DCA), a drinking water contaminant, induced liver tumors in female mice. However, these tumors rarely showed Ha-ras codon 61 mutations, unlike in males.
Area of Science:
- Toxicology
- Carcinogenesis
- Molecular Biology
Background:
- Dichloroacetic acid (DCA) is a common disinfection by-product in drinking water.
- DCA is a known hepatocarcinogen in B6C3F1 mice.
- Previous research indicated DCA alters Ha-ras codon 61 mutation proportions in male mouse liver carcinomas.
Purpose of the Study:
- To investigate Ha-ras codon 61 mutations in liver tumors of female B6C3F1 mice induced by DCA exposure.
- To compare mutation profiles between male and female mice treated with DCA.
Main Methods:
- Female B6C3F1 mice were administered DCA in drinking water for 104 weeks.
- Genomic DNA was isolated from 22 induced liver tumors.
- Polymerase chain reaction (PCR) and single-stranded conformational polymorphism (SSCP) were used to screen for Ha-ras exon 2 mutations, followed by direct sequencing.
Main Results:
- Only one out of 22 liver tumors (4.5%) from DCA-treated female mice exhibited a mutation in Ha-ras exon 2.
- The identified mutation was a CAA to CTA transversion in Ha-ras codon 61.
- This mutation frequency is significantly lower compared to spontaneous tumors and findings in male mice.
Conclusions:
- Hepatocarcinogenesis in female B6C3F1 mice induced by DCA is not associated with Ha-ras codon 61 mutations.
- The mechanism of DCA-induced liver tumor formation differs between male and female B6C3F1 mice.