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Evidence that Myc isoforms transcriptionally repress caveolin-1 gene expression via an INR-dependent mechanism
D S Park1, B Razani, A Lasorella
1Department of Molecular Pharmacology, and Albert Einstein Cancer Center, Albert Einstein College of Medicine, 1300 Morris Park Avenue, Bronx, New York 10461, USA.
Abstract:
The c-Myc oncoprotein contributes to oncogenesis by activating and repressing a repertoire of genes involved in cellular proliferation, metabolism, and apoptosis. Increasing evidence suggests that the repressor function of c-Myc is critical for transformation. Therefore, identifying and characterizing Myc-repressed genes is imperative to understanding the mechanisms of Myc-induced tumorigenesis. Here, we employ NIH 3T3 cell lines harboring c-Myc-ER or N-Myc-ER to dissect the relationship between Myc activation and caveolin-1 expression. In this well-established inducible system, treatment with estrogen like molecules, such as tamoxifen, leads to activation of Myc, but in a tightly controlled fashion. Using this approach, we show that Myc activation induces the repression of caveolin-1 expression at the transcriptional level. We also provide two independent lines of evidence suggesting that caveolin-1 is a direct target of Myc: (i) the effect of Myc activation on caveolin-1 expression is independent of new protein synthesis, as revealed through the use of cycloheximide; and (ii) Myc-mediated repression of the caveolin-1 promoter is dependent on an intact INR sequence. Moreover, we show that expression of caveolin-1, via an adenoviral vector approach, can suppress cell transformation that is mediated by Myc activation. In support of these observations, treatment with an adenoviral vector harboring anti-sense caveolin-1 specifically potentiates transformation induced by Myc activation. Taken together, our results indicate that caveolin-1 is a direct target of Myc repression, and they also provide evidence for an additional mechanism by which Myc repression can elicit a malignant phenotype.
Insights
The oncogene c-Myc represses caveolin-1 expression, a key step in cancer development. Restoring caveolin-1 suppresses Myc-driven cell transformation, revealing a new cancer mechanism.
Area of Science:
- Oncology
- Molecular Biology
- Gene Regulation
Background:
- The c-Myc oncoprotein drives cancer by altering gene expression.
- c-Myc's repressive functions are crucial for tumor formation.
- Understanding Myc-repressed genes is vital for cancer research.
Purpose of the Study:
- To investigate the relationship between Myc activation and caveolin-1 expression.
- To determine if caveolin-1 is a direct target of Myc repression.
- To explore the role of caveolin-1 in Myc-mediated cell transformation.
Main Methods:
- Utilized inducible NIH 3T3 cell lines (c-Myc-ER/N-Myc-ER) activated by tamoxifen.
- Assessed caveolin-1 expression changes upon Myc activation.
- Employed cycloheximide to evaluate protein synthesis independence.
- Analyzed Myc-mediated repression of the caveolin-1 promoter.
- Used adenoviral vectors to modulate caveolin-1 expression.
Main Results:
- Myc activation transcriptionally repressed caveolin-1 expression.
- Caveolin-1 repression by Myc was independent of new protein synthesis.
- Myc-mediated repression of the caveolin-1 promoter required an intact INR sequence.
- Restoring caveolin-1 expression suppressed Myc-induced cell transformation.
- Inhibiting caveolin-1 potentiated Myc-induced transformation.
Conclusions:
- Caveolin-1 is a direct transcriptional target of Myc repression.
- Myc-mediated repression of caveolin-1 contributes to malignant phenotypes.
- Caveolin-1 acts as a tumor suppressor in the context of Myc activation.