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MutLγ promotes repeat expansion in a Fragile X mouse model while EXO1 is protective
Xiaonan Zhao1, Yongwei Zhang2, Kenneth Wilkins3
1Section on Gene Structure and Disease, Laboratory of Cell and Molecular Biology, National Institute of Diabetes, Digestive and Kidney Diseases,National Institutes of Health, Bethesda, MD, United States of America.
Abstract:
The Fragile X-related disorders (FXDs) are Repeat Expansion Diseases resulting from an expansion of a CGG-repeat tract at the 5' end of the FMR1 gene. The mechanism responsible for this unusual mutation is not fully understood. We have previously shown that mismatch repair (MMR) complexes, MSH2/MSH3 (MutSβ) and MSH2/MSH6 (MutSα), together with Polβ, a DNA polymerase important for base excision repair (BER), are important for expansions in a mouse model of these disorders. Here we show that MLH1/MLH3 (MutLγ), a protein complex that can act downstream of MutSβ in MMR, is also required for all germ line and somatic expansions. However, exonuclease I (EXO1), which acts downstream of MutL proteins in MMR, is not required. In fact, a null mutation in Exo1 results in more extensive germ line and somatic expansions than is seen in Exo1+/+ animals. Furthermore, mice homozygous for a point mutation (D173A) in Exo1 that eliminates its nuclease activity but retains its native conformation, shows a level of expansion that is intermediate between Exo1+/+ and Exo1-/- animals. Thus, our data suggests that expansion of the FX repeat in this mouse model occurs via a MutLγ-dependent, EXO1-independent pathway, with EXO1 protecting against expansion both in a nuclease-dependent and a nuclease-independent manner. Our data thus have implications for the expansion mechanism and add to our understanding of the genetic factors that may be modifiers of expansion risk in humans.
Insights
Fragile X-related disorders (FXDs) arise from FMR1 gene CGG-repeat expansions. This study reveals MLH1/MLH3 (MutLγ) is crucial for expansions, while EXO1 protects against them.
Area of Science:
- Genetics
- Molecular Biology
- Genomic Instability
Background:
- Fragile X-related disorders (FXDs) are repeat expansion diseases caused by CGG-repeat expansion in the FMR1 gene.
- The precise molecular mechanisms driving these expansions remain incompletely understood.
- Previous research implicated mismatch repair (MMR) complexes (MutSβ, MutSα) and Polβ in expansion processes.
Purpose of the Study:
- To elucidate the roles of specific MMR pathway components, MLH1/MLH3 (MutLγ) and EXO1, in FMR1 CGG-repeat expansions.
- To investigate the mechanism of repeat expansion and the protective role of EXO1.
Main Methods:
- Utilized a mouse model for Fragile X-related disorders.
- Generated and analyzed mice with targeted mutations in MLH1/MLH3 and EXO1 (including a nuclease-dead mutant).
- Assessed germ line and somatic repeat expansions in these genetically modified mouse models.
Main Results:
- MLH1/MLH3 (MutLγ) is essential for both germ line and somatic CGG-repeat expansions.
- EXO1 is not required for expansion; rather, its absence leads to more extensive expansions.
- A nuclease-inactive EXO1 mutant partially mitigated the expansion increase seen in Exo1 null mice, suggesting both nuclease-dependent and -independent protective roles for EXO1.
Conclusions:
- FMR1 CGG-repeat expansion in this model proceeds through a pathway dependent on MutLγ but independent of EXO1's requirement for expansion.
- EXO1 acts as a suppressor of repeat expansion through both its nuclease activity and other functions.
- These findings enhance understanding of repeat expansion mechanisms and potential genetic modifiers of FXD risk in humans.
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