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MR Molecular Imaging of Prostate Cancer with a Small Molecular CLT1 Peptide Targeted Contrast Agent
Published on: September 3, 2013
Targeting Gbetagamma signaling to inhibit prostate tumor formation and growth
Angela L Bookout1, Amanda E Finney, Rishu Guo
1Department of Surgery, Medicine, Duke University Medical Center, Durham, North Carolina 27710, USA.
Abstract:
Prostate cancer starts as androgen-dependent malignancy and responds initially to androgen ablative therapy. Beneficial effects of androgen ablation, however, are often temporary and the cancer reappears as androgen-independent tumor, suggesting the existence of additional factors responsible for progression of the disease. Attention has focused on receptor tyrosine kinases as the growth mediators of androgen-independent prostate cancer; overexpression of epidermal growth factor receptors or their ligand heparin-bound epidermal growth factor, for example, promotes transition to androgen independence. Emerging data demonstrate involvement of another class of cell membrane-anchored receptors, the heterotrimeric guanine-binding (G) protein-coupled receptors (GPCRs) in prostate cancer. In vitro, stimulation of many endogenous GPCRs induces mitogenic signaling and growth of prostate cancer cells. The GPCRs transduce mitogenic signals via activated G proteins in the form of Galpha-GTP and Gbetagamma subunits. Here, we show that expression of a Gbetagamma inhibitor peptide derived from carboxy terminus of G protein-coupled receptor kinase 2 obliterates serum-regulated prostate cancer cell growth in vitro and prevents prostate tumor formation in vivo. We also demonstrate that inhibition of Gbetagamma signaling retards growth of existing prostate tumors by inducing cell death. These data establish a central role for heterotrimeric G proteins in prostate cancer and suggest targeted inhibition of Gbetagamma signaling may serve as specific molecular therapy tool to limit pathologic growth of advanced prostate cancer.
Insights
Targeting Gbetagamma signaling inhibits prostate cancer cell growth and tumor formation. This approach may offer a new molecular therapy for advanced prostate cancer by inducing cell death.
Area of Science:
- Oncology
- Molecular Biology
- Cell Signaling
Background:
- Prostate cancer initially responds to androgen ablation but often progresses to an androgen-independent state.
- Receptor tyrosine kinases, like epidermal growth factor receptors, are implicated in this progression.
- Heterotrimeric guanine-binding (G) protein-coupled receptors (GPCRs) are emerging as key players in prostate cancer growth.
Purpose of the Study:
- To investigate the role of G protein signaling, specifically Gbetagamma subunits, in prostate cancer progression.
- To evaluate the therapeutic potential of inhibiting Gbetagamma signaling in prostate cancer.
Main Methods:
- Utilized a Gbetagamma inhibitor peptide derived from G protein-coupled receptor kinase 2.
- Assessed the effect of the inhibitor on prostate cancer cell growth in vitro.
- Evaluated the impact of the inhibitor on prostate tumor formation and growth in vivo.
Main Results:
- Inhibition of Gbetagamma signaling by the peptide obliterated serum-regulated prostate cancer cell growth in vitro.
- The Gbetagamma inhibitor peptide prevented prostate tumor formation in vivo.
- Inhibition of Gbetagamma signaling retarded existing tumor growth by inducing cell death.
Conclusions:
- Heterotrimeric G proteins play a central role in prostate cancer.
- Targeted inhibition of Gbetagamma signaling is a promising molecular therapy strategy for advanced prostate cancer.
- This approach may limit pathologic growth and induce cell death in advanced prostate tumors.

