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Published on: February 24, 2014
Tissue-specific reduction in MLH1 expression induces microsatellite instability in intestine of Mlh1+/- mice
Kul S Shrestha1, Elli-Mari Aska1, Minna M Tuominen2
1Systems Oncology (ONCOSYS) Research Program, Research Programs Unit, Faculty of Medicine, University of Helsinki, Helsinki, Finland; Doctoral Program in Integrative Life Sciences, University of Helsinki, Helsinki, Finland; Department of Biochemistry and Developmental Biology, Faculty of Medicine, University of Helsinki, Helsinki, Finland.
Abstract:
Tumors of Lynch syndrome (LS) patients display high levels of microsatellite instability (MSI), which results from complete loss of DNA mismatch repair (MMR), in line with Knudson's two-hit hypothesis. Why some organs, in particular those of the gastrointestinal (GI) tract, are prone to tumorigenesis in LS remains unknown. We hypothesized that MMR is haploinsufficient in certain tissues, compromising microsatellite stability in a tissue-specific manner before tumorigenesis. Using mouse genetics, we tested how levels of MLH1, a central MMR protein, affect age- and tissue-specific microsatellite stability in vivo and whether elevated MSI is detectable prior to loss of MMR function and to neoplastic growth. To assess putative tissue-specific MMR haploinsufficiency, we determined relevant molecular phenotypes (MSI, Mlh1 promoter methylation status, MLH1 protein and RNA levels) in jejuna of Mlh1+/- mice and compared them to those in spleen, as well as to MMR-proficient and -deficient controls (Mlh1+/+ and Mlh1-/- mice). While spleen MLH1 levels of Mlh1+/- mice were, as expected, approximately 50 % compared to wildtype mice, MLH1 levels in jejunum varied substantially between individual Mlh1+/- mice and moreover, decreased with age. Mlh1+/- mice with soma-wide Mlh1 promoter methylation often displayed severe MLH1 depletion in jejunum. Reduced (but still detectable) MLH1 levels correlated with elevated MSI in Mlh1+/- jejunum. MSI in jejunum increased with age, while in spleens of the same mice, MLH1 levels and microsatellites remained stable. Thus, MLH1 expression levels are particularly labile in intestine of Mlh1+/- mice, giving rise to tissue-specific MSI long before neoplasia. A similar mechanism likely also operates also in the human GI epithelium and could explain the wide range in age-of-onset of LS-associated tumorigenesis.
Insights
Lynch syndrome tumors show microsatellite instability due to DNA mismatch repair loss. This study reveals tissue-specific MMR instability in the intestine before tumor formation, explaining Lynch syndrome
Area of Science:
- Genetics and Molecular Biology
- Cancer Biology
- Gastroenterology
Background:
- Lynch syndrome (LS) is linked to hereditary colorectal cancers, characterized by high microsatellite instability (MSI) from DNA mismatch repair (MMR) gene mutations.
- The predisposition of specific organs, like the gastrointestinal tract, to LS-associated tumorigenesis remains unclear.
- Knudson's two-hit hypothesis explains complete MMR loss but not tissue-specific susceptibility.
Purpose of the Study:
- To investigate the hypothesis of tissue-specific MMR haploinsufficiency in LS.
- To determine if MMR instability precedes tumor development in LS.
- To examine the role of MLH1 levels in age- and tissue-specific microsatellite stability.
Main Methods:
- Utilized mouse genetics (Mlh1+/-, Mlh1+/+, Mlh1-/-) to study MLH1 protein levels and microsatellite stability.
- Assessed molecular phenotypes including MSI, Mlh1 promoter methylation, and MLH1 expression in jejunum and spleen.
- Compared findings in Mlh1+/- mice to MMR-proficient and MMR-deficient controls.
Main Results:
- MLH1 levels in the jejunum of Mlh1+/- mice varied significantly and decreased with age, unlike in the spleen.
- Reduced MLH1 levels in the jejunum correlated with elevated MSI, even before neoplastic growth.
- Age-dependent MSI increase was observed in the jejunum but not the spleen of Mlh1+/- mice.
Conclusions:
- MLH1 expression is particularly unstable in the mouse intestinal epithelium, leading to tissue-specific MSI.
- This haploinsufficiency mechanism likely contributes to the variable age-of-onset for LS-associated gastrointestinal tumors in humans.
- Early detection of MSI in the gut may serve as a biomarker for LS tumorigenesis risk.
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