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Published on: June 17, 2014
Truncated APC regulates the transcriptional activity of beta-catenin in a cell cycle dependent manner
Jean Schneikert1, Annette Grohmann, Jürgen Behrens
1Nikolaus-Fiebiger-Center for Molecular Medicine, University Erlangen-Nürnberg, Glückstrasse 6, 91054 Erlangen, Germany.
Abstract:
Most colon cancer cells express truncated versions of the tumour suppressor Adenomatous Polyposis Coli (APC). These molecules are selected during tumourigenesis for impaired beta-catenin degrading activity. In this study, we describe that truncated APC can still control the activity of beta-catenin in colon cancer cell lines via its first 20 amino acid repeat. First, we show that both endogenous and ectopically expressed truncated APC molecules can bind to beta-catenin. Second, reduction of the levels of truncated APC by RNA interference increases the activity of a beta-catenin-dependent reporter gene and stimulates the expression of the beta-catenin target gene AXIN2/conductin. This occurs without alterations of the amounts of cytosolic beta-catenin. Conversely, ectopic expression of truncated APC decreases beta-catenin-dependent transcription without affecting the intensity of immunofluorescence staining of beta-catenin in transfected cells. Third, we reveal that the APC level increases when cells reach the G1-S boundary during cell cycle progression. Simultaneously, the amount of beta-catenin bound to APC increases and the transcriptional activity of beta-catenin drops in an APC-dependent manner. Again, this occurs independently of the amounts of either total or phosphorylated cytosolic beta-catenin. Together, these results indicate that truncated APC controls the ability of beta-catenin to activate transcription. As we also show that the inhibition involves the first 20 amino acid repeat of APC, our data suggest that colon cancer cells retain a truncated APC molecule containing at least the first 20 amino acid repeat to modulate the transcriptional activity of beta-catenin in a cell cycle-dependent manner.
Insights
Truncated Adenomatous Polyposis Coli (APC) proteins in colon cancer cells regulate beta-catenin activity. This regulation occurs via APC's first 20 amino acids, impacting cell cycle progression and gene transcription.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Biology
Background:
- Most colon cancers feature truncated Adenomatous Polyposis Coli (APC) tumor suppressor proteins.
- These truncated APC variants often exhibit reduced ability to degrade beta-catenin, a key pathway in tumorigenesis.
Purpose of the Study:
- To investigate how truncated APC influences beta-catenin activity in colon cancer cells.
- To determine the specific APC region responsible for this modulation.
Main Methods:
- RNA interference to reduce truncated APC levels.
- Beta-catenin-dependent reporter gene assays.
- Analysis of beta-catenin target gene expression (AXIN2/conductin).
- Immunofluorescence staining and Western blotting to assess protein levels and localization.
Main Results:
- Truncated APC binds to beta-catenin, modulating its transcriptional activity without altering total cytosolic levels.
- Reducing truncated APC increases beta-catenin-dependent gene expression.
- APC levels and beta-catenin binding increase at the G1-S phase boundary, decreasing beta-catenin transcriptional activity.
Conclusions:
- Truncated APC retains the ability to control beta-catenin transcriptional activity, primarily through its first 20 amino acid repeat.
- This modulation is cell cycle-dependent, suggesting a role in colon cancer progression.
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