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Regulation of Id1 expression by SRC: implications for targeting of the bone morphogenetic protein pathway in cancer
Oliver Gautschi1, Clifford G Tepper, Phillip R Purnell
1Department of Medical Oncology, Bern University Hospital, Bern, Switzerland. oliver.gautschi@insel.ch
Abstract:
Deregulated activation of the Src tyrosine kinase and heightened Id1 expression are independent mediators of aggressive tumor biology. The present report implicates Src signaling as a critical regulator of Id1 gene expression. Microarray analyses showed that Id family genes were among the most highly down-regulated by incubation of A549 lung carcinoma cells with the small-molecule Src inhibitor AZD0530. Id1 transcript and protein levels were potently reduced in a dose-dependent manner concomitantly with the reduction of activated Src levels. These effects were conserved across a panel of lung, breast, prostate, and colon cancer cell lines and confirmed by the ability of PP2, Src siRNA, and Src-blocking peptides to suppress Id1 expression. PP2, AZD0530, and dominant-negative Src abrogated Id1 promoter activity, which was induced by constitutively active Src. The Src-responsive region of the Id1 promoter was mapped to a region 1,199 to 1,360 bps upstream of the translation start site and contained a Smad-binding element. Src was also required for bone morphogenetic protein-2 (BMP-2)-induced Id1 expression and promoter activity, was moderately activated by BMP-2, and complexed with Smad1/5. Conversely, Src inhibitors blocked Smad1/5 nuclear translocation and binding to the Src-responsive region of the Id1 promoter. Consistent with a role for Src and Id1 in cancer cell invasion, Src inhibitors and Id1 siRNA decreased cancer cell invasion, which was increased by Id1 overexpression. Taken together, these results reveal that Src positively interacts with the BMP-Smad-Id pathway and provide new ways for targeted inhibition of Id1.
Insights
Src signaling regulates Id1 expression, a key factor in aggressive tumors. Inhibiting Src reduces Id1 levels and cancer cell invasion, offering new therapeutic targets.
Area of Science:
- Oncology
- Molecular Biology
- Signal Transduction
Background:
- Deregulated Src tyrosine kinase activation and elevated Id1 expression are linked to aggressive tumor progression.
- Src signaling and Id1 expression are currently understood as independent mediators of tumor biology.
Purpose of the Study:
- To investigate the regulatory role of Src signaling in Id1 gene expression.
- To explore the potential of targeting the Src-Id1 interaction for cancer therapy.
Main Methods:
- Microarray analysis of Id family gene expression in A549 lung carcinoma cells treated with Src inhibitor AZD0530.
- Quantitative assessment of Id1 transcript and protein levels following Src inhibition using various methods (PP2, Src siRNA, Src-blocking peptides).
- Analysis of Id1 promoter activity, Smad-binding element interaction, and bone morphogenetic protein-2 (BMP-2) induced signaling.
Main Results:
- Src inhibition significantly down-regulated Id1 gene and protein expression across multiple cancer cell lines.
- Src activity was found to be essential for BMP-2-induced Id1 expression and promoter activity.
- Inhibition of Src and Id1 decreased cancer cell invasion, while Id1 overexpression increased it.
Conclusions:
- Src signaling is a critical regulator of Id1 gene expression, interacting with the BMP-Smad-Id pathway.
- Targeting Src offers a potential strategy for inhibiting Id1 and reducing cancer cell invasion.
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