Msh-2 suppresses in vivo mutation in a gene dose and lesion dependent manner

O J Sansom1, N J Toft, D J Winton

  • 1School of Biosciences, Cardiff University, PO Box 911, Cardiff CF10 3US, UK, and Department of Pathology, University Medical School, Teviot Place, Edinburgh, EH8 9AG, UK.

Oncogene
|June 29, 2001
PubMed

Insights

The mismatch repair gene Msh2 plays a critical role in suppressing spontaneous mutations and DNA damage-induced mutations in mice. Its function is dose-dependent, with complete loss showing the most significant effects on mutation frequency.

Area of Science:

  • Genetics
  • Molecular Biology
  • Cancer Research

Background:

  • The mismatch repair (MMR) system, including the Msh2 gene, is crucial for genomic stability.
  • Deficiency in MMR genes like Msh2 is linked to accelerated tumorigenesis and altered responses to DNA damage.

Purpose of the Study:

  • To investigate the in vivo mutation frequencies in the intestine of mice with varying Msh2 gene status.
  • To determine the effect of Msh2 deficiency on spontaneous and induced mutation frequencies following DNA damage.

Main Methods:

  • Assessed spontaneous mutation frequencies at the Dolichos biflorus (Dlb-1) locus in aging mice (wild type, heterozygous, and null for Msh2).
  • Evaluated mutation frequencies and apoptotic responses in Msh2 mutant mice after exposure to N-methyl-N'-nitro-N-nitrosoguanidine (MNNG) and cisplatin.

Main Results:

  • Spontaneous mutation frequencies were elevated in Msh2 null mice under 1 year old, and in heterozygous Msh2 mice over 1 year old, indicating a gene dose-dependent effect.
  • Msh2 deficient mice showed reduced apoptosis and increased mutation frequency after MNNG exposure, but not after cisplatin exposure.
  • Cisplatin exposure did not significantly elevate mutation frequencies, even in Msh2 homozygotes, despite the known link between MMR deficiency and cisplatin resistance.

Conclusions:

  • Msh2 plays a complex, context-dependent role in mutation surveillance.
  • Retention of both Msh2 alleles is critical for suppressing spontaneous mutations over time.
  • Complete loss of Msh2 function is required for elevated mutation frequencies after MNNG exposure, while cisplatin-induced mutations appear independent of Msh2 status.

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