The mismatch repair protein MSH2 is rate limiting for repeat expansion in a fragile X premutation mouse model
Abstract:
Fragile X-associated tremor and ataxia syndrome, Fragile X-associated primary ovarian insufficiency, and Fragile X syndrome are Repeat Expansion Diseases caused by expansion of a CGG•CCG-repeat microsatellite in the 5 UTR of the FMR1 gene. To help understand the expansion mechanism responsible for these disorders, we have crossed mice containing∼147 CGG•CCG repeats in the endogenous murine Fmr1 gene with mice containing a null mutation in the gene encoding the mismatch repair protein MSH2. MSH2 mutations are associated with elevated levels of generalized microsatellite instability. However, we show here for the first time that in the FX mouse model, all maternally and paternally transmitted expansions require Msh2. Even the loss of one Msh2 allele reduced the intergenerational expansion frequency significantly. Msh2 is also required for all somatic expansions and loss of even one functional Msh2 allele reduced the extent of somatic expansion in some organs. Tissues with lower levels of MSH2 were more sensitive to the loss of a single Msh2 allele. This suggests that MSH2 is rate limiting for expansion in this mouse model and that MSH2 levels may be a key factor that accounts for tissue-specific differences in expansion risk.
Insights
The mismatch repair protein MSH2 is crucial for the expansion of CGG repeats in the FMR1 gene, which causes Fragile X-associated disorders. Even a partial loss of MSH2 significantly reduces repeat expansions in mice.
Area of Science:
- Genetics
- Molecular Biology
- Neuroscience
Background:
- Fragile X-associated disorders result from CGG•CCG repeat expansions in the FMR1 gene.
- MSH2 is a mismatch repair protein linked to microsatellite instability.
Purpose of the Study:
- To investigate the role of MSH2 in the expansion mechanism of CGG repeats in the FMR1 gene.
- To determine if MSH2 is required for both intergenerational and somatic expansions.
Main Methods:
- Crossed mice with expanded CGG repeats in Fmr1 with Msh2-deficient mice.
- Analyzed maternal and paternal transmission of repeat expansions.
- Assessed somatic repeat expansions in various tissues.
Main Results:
- Maternal and paternal repeat expansions in the FMR1 gene require Msh2.
- Loss of one Msh2 allele significantly reduced intergenerational expansion frequency.
- Msh2 is essential for somatic expansions, with reduced expansion in some organs upon loss of one allele.
- Tissues with lower MSH2 levels showed greater sensitivity to Msh2 allele loss.
Conclusions:
- MSH2 is indispensable for both intergenerational and somatic CGG repeat expansions in the FMR1 gene.
- MSH2 acts as a rate-limiting factor in repeat expansion.
- Tissue-specific MSH2 levels may influence the risk of expansion and associated disorders.
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