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G Protein-Coupled Receptor 87: a Promising Opportunity for Cancer Drug Discovery
Yanhong Zhang1, Ariane Scoumanne, Xinbin Chen
1Center for Comparative Oncology, Schools of Medicine and Veterinary Medicine, University of California, Davis, California.
Abstract:
G protein-coupled receptors (GPRs) constitute one of the largest families of membrane proteins encoded by the human genome. Upon binding to various ligands, these seven-transmembrane receptors play an essential role in many physiological processes, including neurotransmission, immunity, inflammation, regulation of mood and behavior. In view of their important functions, aberrant expression and activity of GPRs have been implicated in a wide spectrum of diseases, including tumorigenesis. GPR87, a cell surface GPR related to the LPA receptor family, is overexpressed in diverse carcinomas and plays an essential role in tumor cell survival. In our recent work, we uncovered that GPR87 expression is regulated by the tumor suppressor p53 and by DNA damage in a p53-dependent manner. Moreover, we found that a lack of GPR87 triggers an increase in p53, concomitant with a decrease in Akt, which results in the sensitization of tumor cells to DNA damage-induced apoptosis and growth suppression. Altogether, we uncovered an essential function for GPR87 in p53-dependent cell survival in response to stress signals. Due to their unique structure, localization and ligand binding ability, GPRs have been extensively used for drug development and are the most common targets of commercial drugs. Although studies are required to determine GPR87 natural ligand(s) and signaling pathways, GPR87 is undoubtedly a very promising novel target for cancer prevention and treatment.
Insights
G protein-coupled receptor 87 (GPR87) is regulated by p53 and DNA damage. Its absence sensitizes tumor cells to apoptosis, highlighting GPR87 as a potential cancer therapy target.
Area of Science:
- Molecular Biology
- Cell Biology
- Oncology
Background:
- G protein-coupled receptors (GPRs) are crucial membrane proteins involved in numerous physiological processes.
- Aberrant GPR expression is linked to diseases, including cancer, with GPR87 overexpressed in various carcinomas.
- GPR87 plays a key role in tumor cell survival.
Purpose of the Study:
- To investigate the regulation of GPR87 expression by p53 and DNA damage.
- To elucidate the role of GPR87 in tumor cell response to DNA damage and its impact on survival.
Main Methods:
- Analysis of GPR87 expression regulation.
- Investigating the effects of GPR87 absence on p53 and Akt levels.
- Assessing tumor cell sensitivity to DNA damage-induced apoptosis and growth suppression.
Main Results:
- GPR87 expression is regulated by the tumor suppressor p53 in a DNA damage-dependent manner.
- Loss of GPR87 leads to increased p53 and decreased Akt levels.
- GPR87 deficiency sensitizes tumor cells to DNA damage, inducing apoptosis and growth suppression.
Conclusions:
- GPR87 plays a critical role in p53-dependent cell survival under stress conditions.
- GPR87 is a promising novel target for cancer prevention and treatment strategies.
- Further research is needed to identify GPR87 ligands and signaling pathways.
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