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Updated: Aug 29, 2026

Deficient Pms2, ERCC1, Ku86, CcOI in Field Defects During Progression to Colon Cancer
Published on: July 28, 2010
BRAF mutations characterize colon but not gastric cancer with mismatch repair deficiency
Carla Oliveira1, Mafalda Pinto, Alex Duval
1Instituto de Patologia e Imunologia Molecular da Universidade do Porto (IPATIMUP), Porto 4200-465, Portugal.
Abstract:
Genes from the RAF family are Ras-regulated kinases involved in growth cellular responses. Recently, a V599E hotspot mutation within the BRAF gene was reported in a high percentage of colorectal tumors and significantly associated to defective mismatch repair (MMR). Additionally, BRAF mutations were described only in K-Ras-negative colon carcinomas, suggesting that BRAF/K-Ras activating mutations might be alternative genetic events in colon cancer. We have addressed to what extent the tumorigenic-positive selection exerted by BRAF mutations seen in colorectal MMR-deficient tumors was also involved in the tumorigenesis of gastric cancer. Accordingly, BRAF mutations were detected in 34% (25/74) of colorectal MMR-deficient tumors and in 5% (7/142) of MMR-proficient colorectal cases (P=0.0001). All mutations found in the MSI cases corresponded to the previously reported hotspot V599E. Two D593K and a K600E additional mutations were also detected in three MSS cases. However, only one mutation of BRAF was found within 124 MSS gastric tumors and none in 37 MSI gastric tumors, clearly suggesting that BRAF mutations are not involved in gastric tumorigenesis. Nonetheless, a high incidence of mutations of K-Ras was found within the MSI gastric group of tumors (P=0.0005), suggesting that the activation of K-Ras-dependent pathways contributes to the tumorigenesis of gastric cancers with MMR deficiency. Accordingly, our results show evidences that BRAF mutations characterize colon but not gastric tumors with MMR deficiency and are not involved in the tumorigenesis of gastric cancer of the mutator phenotype pathway.
Insights
BRAF mutations are common in colorectal tumors with defective mismatch repair (MMR) but rare in gastric tumors. K-Ras mutations are frequent in MMR-deficient gastric cancers, suggesting alternative pathways in gastric tumorigenesis.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- RAF family genes are Ras-regulated kinases crucial for cellular growth.
- A BRAF V599E mutation is prevalent in colorectal tumors, linked to mismatch repair (MMR) deficiency.
- BRAF and K-RAS activating mutations appear to be alternative events in colon cancer.
Purpose of the Study:
- To investigate the role of BRAF mutations in gastric cancer tumorigenesis, particularly in MMR-deficient tumors.
- To compare the prevalence of BRAF mutations in colorectal versus gastric cancers.
- To explore alternative genetic events in MMR-deficient gastric cancers.
Main Methods:
- Analysis of BRAF gene mutations in colorectal and gastric tumor samples.
- Stratification of samples based on MMR proficiency (MMR-deficient/proficient).
- Detection of K-Ras mutations in gastric tumor samples.
Main Results:
- BRAF mutations were found in 34% of MMR-deficient colorectal tumors versus 5% of MMR-proficient colorectal tumors.
- Only one BRAF mutation was detected in MSS gastric tumors, and none in MSI gastric tumors.
- A high incidence of K-Ras mutations was observed in MMR-deficient gastric tumors.
Conclusions:
- BRAF mutations are a significant factor in colorectal cancer with MMR deficiency but not in gastric cancer.
- BRAF mutations are not involved in the tumorigenesis of gastric cancer via the mutator phenotype pathway.
- K-RAS activation is implicated in the development of MMR-deficient gastric cancers.
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