Related Experiment Video
Updated: May 1, 2026

A Genetically Engineered Mouse Model of Sporadic Colorectal Cancer
Published on: July 6, 2017
Analysis of SMAD4/DPC4 gene alterations in multiploid colorectal carcinomas
Tatsuya Ando1, Tamotsu Sugai, Wataru Habano
1First Department of Internal Medicine, Iwate Medical University, Morioka, Japan.
Background:
Although recent animal studies have shown that SMAD4/DPC4 gene alterations are essential for late-stage intestinal tumorigenesis, the role of SMAD4/DPC4 gene alterations in primary human colorectal carcinomas is not fully understood. Therefore, we attempted to clarify the role of the SMAD4/DPC4 gene during tumor progression of colorectal carcinoma.
Methods:
Differences in allelic imbalance (AI) and mutations of the SMAD4/DPC4 gene between diploid and aneuploid populations were analyzed for 30 sporadic DNA multiploid colorectal carcinomas (used as a tumor progression model and defined as the coexistence of diploid and aneuploid cells within the same tumor). The crypt isolation technique was coupled with DNA cytometric sorting and a polymerase chain reaction assay. In addition, hypermethylation of the promoter region was examined to clarify whether inactivation of gene expression occurred.
Results:
Although a SMAD4/DPC4 gene AI was detected in only 5 of 27 informative diploid populations, 25 of 27 aneuploid populations had a SMAD4/DPC4 gene AI. Mutation of the SMAD4/DPC4 gene was detected in only one aneuploid population of multiploid colorectal carcinomas, but not in the corresponding diploid population. In total, 20 available multiploid carcinomas were selected for methylation analysis, and no evidence of hypermethylation of the promoter region was found.
Conclusions:
We suggest that, although mutation of the SMAD4/DPC4 gene and hypermethylation of the promoter region are infrequent events in colorectal tumorigenesis, AI at the SMAD4/DPC4 gene locus may play a key role in the progression of colorectal carcinomas.
Insights
Allelic imbalance (AI) at the SMAD4/DPC4 gene locus is crucial for colorectal cancer progression. While mutations and promoter hypermethylation are rare, AI in aneuploid cells significantly impacts tumor development, highlighting its role in colorectal tumorigenesis.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- SMAD4/DPC4 gene alterations are implicated in intestinal tumorigenesis.
- The precise role of SMAD4/DPC4 in human colorectal carcinoma progression remains unclear.
Purpose of the Study:
- To investigate the role of SMAD4/DPC4 gene alterations in colorectal carcinoma progression.
- To analyze allelic imbalance and mutations in diploid and aneuploid colorectal carcinoma cells.
Main Methods:
- Analysis of SMAD4/DPC4 gene allelic imbalance (AI) and mutations in 30 sporadic DNA multiploid colorectal carcinomas.
- Utilized crypt isolation, DNA cytometric sorting, and polymerase chain reaction (PCR) assays.
- Examined promoter hypermethylation to assess gene expression inactivation.
Main Results:
- SMAD4/DPC4 gene AI was significantly higher in aneuploid populations (25/27) compared to diploid populations (5/27).
- SMAD4/DPC4 gene mutations were rare, found in only one aneuploid population.
- No evidence of promoter hypermethylation was detected in the analyzed multiploid carcinomas.
Conclusions:
- Allelic imbalance at the SMAD4/DPC4 gene locus plays a key role in colorectal carcinoma progression.
- SMAD4/DPC4 gene mutations and promoter hypermethylation are infrequent in colorectal tumorigenesis.
More Related Videos
05:58Digital Polymerase Chain Reaction Assay for the Genetic Variation in a Sporadic Familial Adenomatous Polyposis Patient Using the Chip-in-a-tube Format
Published on: August 20, 2018
07:35Evaluation of Colorectal Cancer Risk and Prevalence by Stool DNA Integrity Detection
Published on: June 8, 2020
Related Concept Videos
Abnormal Proliferation
Tumor Progression
Colon cancer is one of the best-documented examples of tumor progression. Early mutation in the APC gene in colon cells causes a small growth on the colon wall called a polyp. With time, this polyp grows into a benign, pre-cancerous tumor. Further...