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Updated: Aug 24, 2026

Characterize Disease-related Mutants of RAF Family Kinases by Using a Set of Practical and Feasible Methods
Published on: July 17, 2019
RAS/RAF mutation and defective DNA mismatch repair in endometrial cancers
David G Mutch1, Matthew A Powell, Mary Ann Mallon
1Division of Gynecologic Oncology, Washington University School of Medicine, St. Louis, MO 63110, USA. mutchd@msnotes.wustl.edu
Objective:
Defective DNA mismatch repair is a common genetic abnormality in both colon cancers and endometrial cancers. Cancers with defective DNA mismatch repair have the so-called mutator phenotype and accumulate genetic errors at an increased rate. An early mutational target in cells with defect DNA mismatch repair may be the RAS/RAF pathway. Colon cancers often have KRAS2 mutations and, if not KRAS2 mutations, may have BRAF mutations. This study investigated the spectrum and frequency of mutations in BRAF and KRAS2 in endometrial carcinomas on the basis of mismatch repair status.
Study Design:
Four hundred forty-one patients with endometrial cancer were staged properly and graded and evaluated for mismatch repair status. These patients were then stratified to groups by the degree of microsatellite instability that was observed in their tumors. One hundred forty-six of the selected tumors were then evaluated for KRAS2 and BRAF mutations on the basis of their microsatellite instability.
Results:
One hundred forty-six endometrioid endometrial cancers were evaluated for KRAS2 and BRAF mutations. Thirty-five cancers (24%) had activating KRAS2 mutations, but only a single BRAF mutation was identified in an microsatellite instability-positive cancer. Twenty-four of 81 microsatellite instability high cancers (29.6%) in which the MLH1 repair gene was methylated had KRAS2 mutations. When compared with the other groups, this finding approached statistical significance (P=.06). KRAS2 mutation status was associated with increasing age at diagnosis (P=.02).
Conclusion:
Despite many similarities between colon and endometrial cancers, the mechanism of the development of endometrial cancers appears to be different from colon cancers in that BRAF is not affected by a mismatch repair problem, because only KRAS2 mutations were seen. In addition, increasing age appears to lead to an increased likelihood that such a mutation will occur.
Insights
Defective DNA mismatch repair in endometrial cancer primarily involves KRAS2 mutations, not BRAF. This suggests a different cancer development mechanism compared to colon cancer, with age increasing mutation risk.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Defective DNA mismatch repair (MMR) is common in colon and endometrial cancers, leading to a mutator phenotype and increased genetic errors.
- The RAS/RAF pathway is a potential early mutational target in MMR-deficient cancers.
- Colon cancers frequently harbor KRAS2 or BRAF mutations, unlike endometrial cancers.
Purpose of the Study:
- To investigate the spectrum and frequency of BRAF and KRAS2 mutations in endometrial carcinomas.
- To analyze these mutations in relation to mismatch repair status.
Main Methods:
- Evaluated 441 endometrial cancer patients for staging, grading, and MMR status.
- Stratified patients by microsatellite instability (MSI) levels.
- Assessed 146 selected tumors for KRAS2 and BRAF mutations based on MSI status.
Main Results:
- Of 146 endometrioid endometrial cancers, 35 (24%) had activating KRAS2 mutations.
- Only one BRAF mutation was found in an MSI-positive cancer.
- KRAS2 mutations were observed in 29.6% of MSI-high cancers with MLH1 methylation, approaching statistical significance (P=.06).
- KRAS2 mutation status correlated with increasing age at diagnosis (P=.02).
Conclusions:
- Endometrial cancer development differs from colon cancer, with BRAF mutations not being affected by MMR deficiency.
- KRAS2 mutations are the primary genetic alterations observed in this context.
- Increasing age is associated with a higher likelihood of KRAS2 mutations in endometrial cancer.
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