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Isolation and characterization of the anticancer gene organic cation transporter like-3 (ORCTL3)
1Division of Experimental Medicine, Imperial College London, Hammersmith Campus, Du Cane Road, London, W12 0NN, UK.
Abstract:
ORCTL3, an organic cation/anion transporter expressed in various tissue types, was isolated in a genome-wide cDNA screen as a gene with a tumor-specific apoptosis activity. When overexpressed it elicits an apoptosis response in many transformed cells, while normal cells remain unaffected. It can be activated for apoptosis induction by individual tumorigenic mutations in renal cells. This effect is independent of the tumor cells' proliferation status and mediated by an incomplete ER stress response, characterized by the accumulation of the endoplasmic reticulum-stress marker ATF4, but not BiP. Recent studies show that for its apoptosis induction activity ORCTL3 targets the enzyme stearoyl-CoA desaturase-1 (SCD-1) that is involved in the fatty acid metabolism. This is evidenced by the inhibition of apoptosis induced through ORCTL3 when the SCD-1 product oleic acid is exogenously supplemented or when SCD-1 is co-transfected in the transformed cells. ORCTL3's activity to specifically target tumor cells is caused by the transmembrane domains 3 and 4 of the mouse, but not the human, gene. In an in vivo model ORCTL3 shows a significant shrinkage in the size of xenograft tumors when injected with an adenoviral carrier carrying the mouse ORCTL3 gene. An ex vivo study using human renal cancer cells confirmed the promising tumor-specific apoptosis effect of ORCTL3. Since ORCTL3 targets fatty acid metabolism in transformed cells and induces an ER stress specifically in these cells, it reveals a novel therapeutic interference option for tumor cells.
Insights
Organic cation/anion transporter 3 (ORCTL3) induces tumor-specific apoptosis by targeting fatty acid metabolism and ER stress. Mouse ORCTL3 demonstrated significant tumor shrinkage in vivo, highlighting its therapeutic potential.
Area of Science:
- Molecular biology
- Cancer research
- Cellular stress response
Background:
- Organic cation/anion transporter 3 (ORCTL3) is a gene with tumor-specific apoptosis activity.
- ORCTL3 overexpression induces apoptosis in transformed cells but not normal cells.
- Tumorigenic mutations can activate ORCTL3-mediated apoptosis in renal cells.
Purpose of the Study:
- To investigate the mechanism of ORCTL3-induced tumor-specific apoptosis.
- To identify the molecular targets of ORCTL3.
- To evaluate the therapeutic potential of ORCTL3 in cancer treatment.
Main Methods:
- Genome-wide cDNA screening to identify ORCTL3.
- Overexpression studies in transformed and normal cells.
- In vivo xenograft tumor models and ex vivo studies with human renal cancer cells.
Main Results:
- ORCTL3 induces apoptosis via an incomplete endoplasmic reticulum (ER) stress response, accumulating ATF4.
- ORCTL3 targets stearoyl-CoA desaturase-1 (SCD-1), an enzyme in fatty acid metabolism.
- Mouse ORCTL3, but not human ORCTL3, exhibits tumor-specific apoptosis due to specific transmembrane domains.
- ORCTL3 significantly reduced xenograft tumor size in vivo and showed apoptosis in human renal cancer cells ex vivo.
Conclusions:
- ORCTL3 is a promising therapeutic agent for cancer, inducing tumor-specific apoptosis.
- Targeting fatty acid metabolism and ER stress in cancer cells is a viable therapeutic strategy.
- Mouse ORCTL3 demonstrates significant anti-tumor activity and warrants further investigation for clinical application.

