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Effect of Ames dwarfism and caloric restriction on spontaneous DNA mutation frequency in different mouse tissues
Ana Maria Garcia1, Rita A Busuttil, R Brent Calder
1University of Texas at San Antonio, San Antonio, TX, USA.
Abstract:
Genetic instability has been implicated as a causal factor in cancer and aging. Caloric restriction (CR) and suppression of the somatotroph axis significantly increase life span in the mouse and reduce multiple symptoms of aging, including cancer. To test if in vivo spontaneous mutation frequency is reduced by such mechanisms, we crossed long-lived Ames dwarf mice with a C57BL/6J line harboring multiple copies of the lacZ mutation reporter gene as part of a plasmid that can be recovered from tissues and organs into Escherichia coli to measure mutant frequencies. Four cohorts were studied: (1) ad lib wild-type; (2) CR wild-type; (3) ad lib dwarf; and (4) CR dwarf. While both CR wild-type and ad lib dwarf mice lived significantly longer than the ad lib wild-type mice, under CR conditions dwarf mice did not live any longer than ad lib wild-type mice. While this may be due to an as yet unknown adverse effect of the C57BL/6J background, it did not prevent an effect on spontaneous mutation frequencies at the lacZ locus, which were assessed in liver, kidney and small intestine of 7- and 15-month-old mice of all four cohorts. A lower mutant frequency in the ad lib dwarf background was observed in liver and kidney at 7 and 15 months of age and in small intestine at 15 months of age as compared to the ad lib wild-type. CR also significantly reduced spontaneous mutant frequency in kidney and small intestine, but not in liver. In a separate cohort of lacZ-C57BL/6J mice CR was also found to significantly reduce spontaneous mutant frequency in liver and small intestine, across three age levels. These results indicate that two major pro-longevity interventions in the mouse are associated with a reduced mutation frequency. This could be responsible, at least in part, for the enhanced longevity associated with Ames dwarfism and CR.
Insights
Caloric restriction (CR) and Ames dwarfism interventions in mice significantly reduce spontaneous mutation frequency, potentially explaining their pro-longevity effects and reduced cancer risk.
Area of Science:
- Genetics
- Aging Research
- Molecular Biology
Background:
- Genetic instability is linked to cancer and aging.
- Caloric restriction (CR) and Ames dwarfism extend mouse lifespan and mitigate aging symptoms, including cancer.
- Investigating the impact of these interventions on spontaneous mutation frequency is crucial for understanding aging and cancer mechanisms.
Purpose of the Study:
- To determine if caloric restriction (CR) and Ames dwarfism reduce in vivo spontaneous mutation frequency.
- To assess mutation frequency in liver, kidney, and small intestine of mice under different conditions.
- To explore the relationship between reduced mutation frequency and enhanced longevity.
Main Methods:
- Crossed Ames dwarf mice with C57BL/6J mice carrying the lacZ mutation reporter gene.
- Studied four cohorts: ad lib wild-type, CR wild-type, ad lib dwarf, and CR dwarf.
- Measured spontaneous mutation frequencies in liver, kidney, and small intestine at 7 and 15 months of age.
Main Results:
- Ad lib dwarf mice showed lower mutant frequencies in liver and kidney at both ages, and small intestine at 15 months, compared to ad lib wild-type.
- CR significantly reduced spontaneous mutant frequency in kidney and small intestine, but not liver.
- CR also reduced mutation frequency in liver and small intestine in a separate cohort.
Conclusions:
- Both caloric restriction (CR) and Ames dwarfism are associated with reduced spontaneous mutation frequency in mice.
- This reduction in genetic instability may contribute to the pro-longevity effects observed with these interventions.
- Findings suggest a link between decreased mutation rates and extended lifespan, potentially impacting cancer prevention.

