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Multiple sites required for expression in 5'-flanking region of the hMLH1 gene
Michitsune Arita1, Xiaoling Zhong, Zhenghua Min
1Department of Molecular Biology, Toho University School of Medicine, 5-21-16 Ohmori-Nishi, Ohta-ku, Tokyo 143-8540, Japan. cwwarita@med.toho-u.ac.jp
Abstract:
Expression of the hMLH1 gene, one of the DNA mismatch repair genes, is frequently repressed in various cancers such as colorectal, ovarian, gastric, and endometrial origins with a microsatellite instable phenotype. In this study, we investigated details of the relationship between the transcriptional activity and the protein-binding sites in the 5'-flanking region of the hMLH1 gene. Luciferase reporter gene analysis with a series of deletion mutants revealed that a region containing -301 to -76 relative to a translation start site is essential for maximal expression. Eight protein-binding sites in this region were identified by in vivo methylation footprinting analysis and homology search. A presence of binding proteins to CCAAT-box at -145 to -139 was confirmed by the electrophoresis mobility shift assay. Partial involvement of NF-Y was seen by the super gel shift assay. Three reporter plasmids having a single site-directed mutation at -163 to -158, -145 to -139, or -96 to -93 showed 14-30% less activities to that of having the wild-type. Dual or triple mutations were no greater effect than the single mutation on the activity. These results indicate that three cis-elements are essential for full expression of the hMLH1 gene and may work co-operatively.
Insights
The hMLH1 gene
Area of Science:
- Molecular biology
- Cancer genetics
Background:
- The hMLH1 gene, a key DNA mismatch repair gene, shows repressed expression in various cancers.
- Microsatellite instability is a hallmark of cancers with hMLH1 repression.
Purpose of the Study:
- To investigate the relationship between transcriptional activity and protein-binding sites in the hMLH1 gene's 5'-flanking region.
- To identify specific cis-elements crucial for hMLH1 gene expression.
Main Methods:
- Luciferase reporter gene assays with deletion mutants.
- In vivo methylation footprinting and homology search.
- Electrophoresis mobility shift assay (EMSA) and super gel shift assay.
Main Results:
- A region from -301 to -76 is critical for maximal hMLH1 expression.
- Eight protein-binding sites were identified within this critical region.
- Mutations in three specific cis-elements (-163 to -158, -145 to -139, -96 to -93) significantly reduced gene activity.
Conclusions:
- Three cis-elements in the hMLH1 5'-flanking region are essential for its full expression.
- These elements likely function cooperatively to regulate hMLH1 transcription.
- Understanding these regulatory elements could inform cancer therapy strategies.