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Updated: May 30, 2026

Deficient Pms2, ERCC1, Ku86, CcOI in Field Defects During Progression to Colon Cancer
Published on: July 28, 2010
Frequent alteration of MLL3 frameshift mutations in microsatellite deficient colorectal cancer
Yoshiyuki Watanabe1, Ryan J Castoro, Hyun Soo Kim
1Department of Leukemia, The University of Texas M. D. Anderson Cancer Center, Houston, Texas, United States of America. ponponta@marianna-u.ac.jp
Background:
MLL3 is a histone 3-lysine 4 methyltransferase with tumor-suppressor properties that belongs to a family of chromatin regulator genes potentially altered in neoplasia. Mutations in MLL3 were found in a whole genome analysis of colorectal cancer but have not been confirmed by a separate study.
Methods And Results:
We analyzed mutations of coding region and promoter methylation in MLL3 using 126 cases of colorectal cancer. We found two isoforms of MLL3 and DNA sequencing revealed frameshift and other mutations affecting both isoforms of MLL3 in colorectal cancer cells and 19 of 134 (14%) primary colorectal samples analyzed. Moreover, frameshift mutations were more common in cases with microsatellite instability (31%) both in CRC cell lines and primary tumors. The largest isoform of MLL3 is transcribed from a CpG island-associated promoter that has highly homology with a pseudo-gene on chromosome 22 (psiTPTE22). Using an assay which measured both loci simultaneously we found prominent age related methylation in normal colon (from 21% in individuals less than 25 years old to 56% in individuals older than 70, R = 0.88, p<0.001) and frequent hypermethylation (83%) in both CRC cell lines and primary tumors. We next studied the two loci separately and found that age and cancer related methylation was solely a property of the pseudogene CpG island and that the MLL3 loci was unmethylated.
Conclusions:
We found that frameshift mutations of MLL3 in both CRC cells and primary tumor that were more common in cases with microsatellite instability. Moreover, we have shown CpG island-associated promoter of MLL3 gene has no DNA methylation in CRC cells but also primary tumor and normal colon, and this region has a highly homologous of pseudo gene (psiTPTE22) that was age relate DNA methylation.
Insights
MLL3 gene mutations are common in colorectal cancer, especially in microsatellite instability cases. The MLL3 promoter remains unmethylated, unlike a homologous pseudogene that shows age-related methylation.
Area of Science:
- Genetics
- Oncology
- Epigenetics
Background:
- The MLL3 gene, a histone methyltransferase, possesses tumor-suppressor functions and is part of the chromatin regulator gene family.
- Alterations in MLL3 have been implicated in various cancers, including colorectal cancer (CRC).
- Previous whole-genome studies suggested MLL3 mutations in CRC, but confirmation was pending.
Purpose of the Study:
- To investigate mutations in the coding region and promoter methylation of the MLL3 gene in colorectal cancer.
- To confirm the role of MLL3 alterations in CRC pathogenesis.
- To explore the relationship between MLL3 mutations, microsatellite instability, and promoter methylation patterns.
Main Methods:
- Analysis of MLL3 coding region mutations and promoter methylation in 126 colorectal cancer cases.
- DNA sequencing to identify frameshift and other mutations in MLL3 isoforms.
- Assays to measure methylation at the MLL3 promoter and a homologous pseudogene (psiTPTE22).
Main Results:
- Frameshift and other mutations in both MLL3 isoforms were identified in 14% of primary colorectal samples and CRC cell lines.
- MLL3 mutations were significantly more frequent in cases with microsatellite instability (31%).
- The MLL3 promoter region showed no DNA methylation in normal colon, tumors, or cell lines; however, the homologous pseudogene (psiTPTE22) exhibited age-related methylation.
Conclusions:
- Frameshift mutations in MLL3 occur in colorectal cancer and are more prevalent in microsatellite instability-positive cases.
- The CpG island promoter of the MLL3 gene is unmethylated in CRC and normal colon tissues.
- Age-related DNA methylation is associated with a homologous pseudogene (psiTPTE22) of MLL3, not the MLL3 gene itself.
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