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Updated: Aug 2, 2026

Deficient Pms2, ERCC1, Ku86, CcOI in Field Defects During Progression to Colon Cancer
Published on: July 29, 2010
Differential cellular expression of the human MSH2 repair enzyme in small and large intestine
T M Wilson1, A Ewel, J R Duguid
1Department of Pediatrics, Herman B. Wells Center for Pediatric Research, Indianapolis, IN 46202, USA.
Abstract:
The human MSH2 (hMSH2) protein is responsible for the initial recognition of mismatched nucleotides during the postreplication mismatch repair process. Loss of hMSH2 function has been demonstrated to lead to the accumulation of replication errors, resulting in a mutator phenotype, which may be responsible for the multiple mutations required for multi-stage carcinogenesis. Alterations of the hMSH2 gene has been linked to approximately 60% of hereditary nonpolyposis colon cancer cases. Colon tumors in hereditary nonpolyposis colon cancer patients originate within benign preneoplastic adenomas and display replication errors in the form of microsatellite instability. The aim of this study was to investigate the cellular expression of the hMSH2 protein in cells of the large and small intestines. Using antibody specific for hMSH2, we have determined that this protein is highly expressed in cells of the crypts of Lieberkühn that are undergoing rapid renewal in both the ileum and colon. Proliferative perifibroblasts in the colon also showed significant presence of the hMSH2 protein. These results confirm the hypothesis that hMSH2 is expressed in highly proliferative cells of the gut, and mutations in this gene could, therefore, be expected to expedite the progression of adenoma to carcinoma in this tissue.
Insights
The human MSH2 protein is crucial for DNA repair in rapidly dividing gut cells. Its high expression in intestinal crypts suggests a role in preventing cancer progression.
Area of Science:
- Molecular Biology
- Genetics
- Cancer Research
Background:
- The human MSH2 (hMSH2) protein initiates DNA mismatch repair, preventing replication errors.
- Loss of hMSH2 function can cause a mutator phenotype, contributing to multi-stage carcinogenesis.
- hMSH2 gene alterations are linked to approximately 60% of hereditary nonpolyposis colon cancer (HNPCC).
Purpose of the Study:
- To investigate the cellular expression of the hMSH2 protein in the large and small intestines.
- To correlate hMSH2 expression with proliferative cell populations in the gut.
Main Methods:
- Utilized antibodies specific for hMSH2.
- Examined protein expression in intestinal tissues (ileum and colon).
Main Results:
- hMSH2 protein is highly expressed in the crypts of Lieberkühn, sites of rapid cell renewal in both ileum and colon.
- Significant hMSH2 presence was also observed in proliferative perifibroblasts of the colon.
Conclusions:
- hMSH2 is expressed in highly proliferative gut cells, supporting its role in DNA repair.
- Mutations in hMSH2 may accelerate the progression from adenoma to carcinoma in the intestinal tract.
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