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.

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.

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