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The Tyr-265-to-Cys mutator mutant of DNA polymerase beta induces a mutator phenotype in mouse LN12 cells

C A Clairmont1, L Narayanan, K W Sun

  • 1VION Pharmaceuticals, New Haven, CT 06511, USA.

Insights

A mutated DNA polymerase beta (Y265C) causes an 8-fold increase in mutations in mammalian cells. This study is the first to show a mutator phenotype from a DNA polymerase mutant in mammals, suggesting a link to cancer.

Area of Science:

  • Molecular Biology
  • Genetics
  • Biochemistry

Background:

  • DNA polymerase beta is crucial for DNA repair and meiosis.
  • Errors in DNA polymerase beta can lead to mutations.
  • A previously identified Y265C mutant exhibits dominant mutator activity.

Purpose of the Study:

  • To investigate the in vivo mutagenic effects of the Y265C DNA polymerase beta mutant in mammalian cells.
  • To determine if the Y265C mutant induces a mutator phenotype in a cellular context with endogenous DNA polymerase beta activity.

Main Methods:

  • Expression of wild-type and Y265C mutant rat DNA polymerase beta in mouse LN12 cells.
  • Complementation system using Escherichia coli DNA polymerase I.
  • Measurement of spontaneous mutation frequency in lambdacII mutants.

Main Results:

  • Expression of the Y265C mutant increased spontaneous mutation frequency by 8-fold compared to wild-type.
  • The Y265C mutant significantly increased the frequency of deletions (≥3 bases) and point mutations.
  • Observed mutations in vivo are directly attributed to the action of the mutator DNA polymerase.

Conclusions:

  • This is the first demonstration of a mutator phenotype from a DNA polymerase mutant in mammalian cells.
  • The Y265C mutant DNA polymerase beta directly causes increased mutation rates in vivo.
  • Variant DNA polymerases may contribute to genetic instability and carcinogenesis in humans.

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