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Published on: April 7, 2017
Metabotropic glutamate receptor 1 (Grm1) is an oncogene in epithelial cells
J J Martino1, B A Wall, E Mastrantoni
1Department of Chemical Biology, Susan Lehman Cullman Laboratory for Cancer Research, Ernest Mario School of Pharmacy, Rutgers, The State University of New Jersey, Piscataway, NJ, USA.
Abstract:
Non-neuronal expression of components of the glutamatergic system has been increasingly observed, and our laboratory previously had demonstrated the etiological role of ectopically expressed metabotropic glutamate receptor 1 (Grm1/mGluR1) in mouse models of melanoma. We hypothesize that inappropriate glutamatergic signaling in other cell types can dysregulate growth leading to transformation and tumorigenesis. As most cancers are carcinomas, we selected an immortalized primary baby mouse kidney (iBMK) cell model to assess whether Grm1 can transform epithelial cells. These iBMK cells, engineered to be immortal yet nontumorigenic and retaining normal epithelial characteristics, were used as recipients for exogenous Grm1 cDNA. Several stable Grm1-expressing clones were isolated and the Grm1-receptors were shown to be functional, as evidenced by the accumulation of second messengers in response to Grm1 agonist. Additionally activated by agonist were mitogen-activated protein kinase (MAPK) and AKT/protein kinase B signaling cascades, the major intracellular pathways shown by many investigators to be critical in melanomagenesis and other neoplasms. These Grm1-iBMK cells exhibited enhanced cell proliferation in in vitro methylthiazolyldiphenyl-tetrazolium bromide (MTT) assays and significant tumorigenicity in in vivo allografts. Persistent Grm1 expression was required for the maintenance of the in vivo tumorigenic phenotype as demonstrated by an inducible Grm1-silencing RNA. These are the first results that indicate that Grm1 can be an oncogene in epithelial cells. In addition, relevance to human disease in the corresponding tumor type of renal cell carcinoma (RCC) may be suggested by observed expression of GRM1/mGluR1 in a number of RCC tumor biopsy samples and cell lines, and the effects of GRM1 modulation on tumorigenicity therein. Moreover, RCC cell lines exhibited elevated levels of extracellular glutamate, and some lines responded to drugs, which modulate the glutamatergic system. These findings imply a possible role for glutamate signaling apparatus in RCC cell growth, and that the glutamatergic system may be a therapeutic target in RCC.
Insights
Metabotropic glutamate receptor 1 (Grm1) can act as an oncogene in epithelial cells, promoting cell proliferation and tumor formation. Targeting the glutamatergic system may offer a new therapeutic strategy for renal cell carcinoma (RCC).
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Non-neuronal expression of glutamatergic system components is increasingly recognized.
- Previous work implicated metabotropic glutamate receptor 1 (Grm1/mGluR1) in melanoma etiology.
- The role of Grm1 in epithelial cell transformation and tumorigenesis remained unexplored.
Purpose of the Study:
- To investigate if Grm1 can induce transformation and tumorigenesis in epithelial cells.
- To explore the potential of Grm1 as an oncogene in carcinomas.
- To assess the relevance of Grm1 and glutamatergic signaling in renal cell carcinoma (RCC).
Main Methods:
- Engineered immortalized primary baby mouse kidney (iBMK) cells to express exogenous Grm1 cDNA.
- Assessed Grm1 receptor functionality via second messenger accumulation and signaling cascade activation (MAPK, AKT).
- Evaluated in vitro proliferation (MTT assays) and in vivo tumorigenicity (allografts).
- Utilized inducible Grm1-silencing RNA to assess the necessity of Grm1 expression for tumorigenicity.
- Analyzed GRM1/mGluR1 expression in RCC tumor samples and cell lines.
- Measured extracellular glutamate levels and drug responses in RCC cell lines.
Main Results:
- Stable Grm1-expressing iBMK cells showed functional Grm1 receptors, activating MAPK and AKT pathways.
- Grm1-expressing iBMK cells exhibited enhanced proliferation and significant tumorigenicity in vivo.
- Grm1 expression was essential for maintaining the tumorigenic phenotype.
- GRM1/mGluR1 was expressed in RCC tumors and cell lines.
- RCC cell lines showed elevated extracellular glutamate and responded to glutamatergic drugs.
Conclusions:
- Grm1 can function as an oncogene in epithelial cells, driving proliferation and tumorigenesis.
- Glutamatergic signaling plays a role in RCC cell growth.
- The glutamatergic system represents a potential therapeutic target for RCC.
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