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Testosterone modulation of N-acetylation in mouse kidney
T N Smolen1, J A Brewer, W W Weber
1Institute for Behavioral Genetics, University of Colorado, Boulder.
Abstract:
N-acetylation participates in the biotransformation of hydrazine drugs and arylamine carcinogens to cytotoxic and carcinogenic products. Differences in acetylation capacity expressed in several mammalian species, including humans and mice, are associated with differences in toxicity and carcinogenicity from these chemicals. The present study examines the influence of genotype, age and sex on kidney N-acetyltransferase (NAT) activity in C57BL/6J (B6) and A/J inbred mouse strains using p-amino-benzoic acid (PABA) as a substrate. There were no strain differences in kidney PABA NAT activity. However, within these strains, males have greater kidney NAT activity than females. A 2-fold increase in kidney NAT activity of males was evident by 30 days postnatally and persisted into maturity (> 200 days after birth), whereas the kidney NAT activity of females remained unchanged. Castration reduced male kidney NAT to female levels, whereas testosterone replacement restored original levels of activity. Ovariectomized females exhibited the same enzyme activity as intact females. Testosterone increased kidney NAT activity in females, but not in intact males. Estradiol decreased kidney NAT in males, but had no effect on female NAT activity. The data suggest that the increase in kidney NAT activity in male mice that accompanies development is under androgenic control. This idea is further supported by our finding that the kidney NAT activity of androgen-insensitive tfm/y mice is significantly less than the activity of either females or males sharing the same genetic background. These observations may explain, in part, the higher susceptibility of male mice to 2-acetylaminofluorene mutagenicity and carcinogenicity.
Insights
Kidney N-acetyltransferase (NAT) activity is higher in male mice due to androgenic control, influencing their susceptibility to certain chemical carcinogens.
Area of Science:
- Pharmacology
- Toxicology
- Biochemistry
Background:
- N-acetylation is crucial for metabolizing drugs and carcinogens.
- Variations in acetylation capacity affect chemical toxicity and carcinogenicity across species.
- Kidney N-acetyltransferase (NAT) plays a role in biotransformation.
Purpose of the Study:
- To investigate how genotype, age, and sex influence kidney NAT activity in mice.
- To understand the hormonal regulation of kidney NAT activity.
Main Methods:
- Assessed kidney N-acetyltransferase (NAT) activity using p-amino-benzoic acid (PABA) as a substrate.
- Compared NAT activity across different inbred mouse strains (C57BL/6J and A/J).
- Examined the effects of age, sex, castration, testosterone, and estradiol on NAT activity.
Main Results:
- No significant strain differences in kidney NAT activity were observed.
- Male mice exhibited significantly higher kidney NAT activity than females, starting from postnatal day 30.
- Androgen manipulation (castration, testosterone, estradiol) demonstrated androgenic control over male kidney NAT activity.
- Testosterone increased NAT activity in females, while estradiol decreased it in males.
Conclusions:
- Kidney NAT activity in male mice is developmentally regulated and under androgenic control.
- Hormonal influences on NAT activity may contribute to sex-based differences in susceptibility to chemical mutagens and carcinogens.