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Updated: Aug 3, 2026

Assessing Somatic Hypermutation in Ramos B Cells after Overexpression or Knockdown of Specific Genes
Published on: November 1, 2011
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.
Abstract:
Mice deficient for the mismatch repair (MMR) gene Msh2 show accelerated tumourigenesis and a reduced apoptotic response to DNA damage of methylation type. Here we examine the effect of mutation for Msh2 on in vivo mutation frequencies in the intestine as determined by loss of function at the Dolichos biflorus (Dlb-1) locus. Spontaneous mutation frequencies were scored in cohorts of ageing mice either wild type or mutant for Msh2. In mice less than 1 year old, mutation frequencies were only elevated in Msh2 null mice. However, beyond this age heterozygous Msh2 mice showed significantly higher mutation frequencies than controls. These findings implicate a gene dose dependent requirement for Msh2 in mutation suppression and prompted an analysis of young Msh2 mutants following exposure to DNA damage. Following exposure to N-methyl-N'-nitro-N-nitrosoguanidine (MNNG), Msh2 deficient mice show a reduced apoptotic response and an increase in mutation frequency. Heterozygotes did not differ from controls. Following exposure to cisplatin, no significant elevation was seen in mutation frequencies, even within homozygotes. This is particularly surprising given the association between cisplatin resistance and MMR deficiency. These findings therefore demonstrate a complex reliance upon functional Msh2 in mutation surveillance. We have identified three separate scenarios. First, where retention of both Msh2 alleles over an extended period of time appears critical to the suppression of spontaneous mutation; second, 3 weeks following exposure to MNNG, where only complete loss of Msh2 results in elevated mutation; and finally following cisplatin exposure, where induced levels of mutation are independent of Msh2 status.
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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