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Age-related changes in expression and activity of DNA polymerase alpha: some effects of dietary restriction

V K Srivastava1, S Miller, M D Schroeder

  • 1Department of Anatomy and Public Health, College of Veterinary Medicine, Texas A & M University, College Station 77843.

Mutation Research
|December 1, 1993
PubMed

Insights

Aging reduces DNA polymerase alpha (pol alpha) expression and activity in human cells and mice. Dietary restriction in mice mitigates these age-related declines, preserving pol alpha function and fidelity.

Area of Science:

  • Molecular Biology
  • Gerontology
  • Biochemistry

Background:

  • DNA polymerase alpha (pol alpha) is crucial for DNA replication and repair.
  • Age-related decline in cellular function is a hallmark of aging.
  • Understanding pol alpha's age-dependent changes is vital for aging research.

Purpose of the Study:

  • To investigate the age-related changes in DNA polymerase alpha (pol alpha) expression, activity, and fidelity.
  • To examine the effects of dietary restriction (DR) on hepatic pol alpha in aging mice.
  • To explore the relationship between pol alpha expression, accessory proteins, and cellular transformation.

Main Methods:

  • Purification and characterization of pol alpha from human diploid fibroblasts (HDF) and mouse liver.
  • Measurement of mRNA levels, enzyme amount, specific activity, and fidelity.
  • Assessment of pol alpha activity with and without accessory proteins in normal and transformed cells.

Main Results:

  • Age-related decreases in pol alpha mRNA, enzyme levels, activity, and fidelity were observed in HDF and mouse liver.
  • Dietary restriction (DR) in mice attenuated age-related declines in hepatic pol alpha specific activity and fidelity.
  • Transformed HDF showed increased pol alpha expression, but accessory protein interaction was altered with age, impacting DNA binding and activity.

Conclusions:

  • Aging leads to reduced pol alpha expression and function in both human and mouse models.
  • Dietary restriction (DR) effectively counteracts age-associated declines in hepatic pol alpha activity and fidelity.
  • Age-related alterations in pol alpha accessory protein interaction contribute to decreased DNA binding and activity.

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