Dopamine Receptor D5 is a Modulator of Tumor Response to Dopamine Receptor D2 Antagonism
Varun V Prabhu1, Neel S Madhukar2, Coryandar Gilvary2
1Oncoceutics, Philadelphia, Pennsylvania.
Purpose:
Dopamine receptor D2 (DRD2) is a G protein-coupled receptor antagonized by ONC201, an anticancer small molecule in clinical trials for high-grade gliomas and other malignancies. DRD5 is a dopamine receptor family member that opposes DRD2 signaling. We investigated the expression of these dopamine receptors in cancer and their influence on tumor cell sensitivity to ONC201.
Experimental Design:
The Cancer Genome Atlas was used to determine DRD2/DRD5 expression broadly across human cancers. Cell viability assays were performed with ONC201 in >1,000 Genomic of Drug Sensitivity in Cancer and NCI60 cell lines. IHC staining of DRD2/DRD5 was performed on tissue microarrays and archival tumor tissues of glioblastoma patients treated with ONC201. Whole exome sequencing was performed in RKO cells with and without acquired ONC201 resistance. Wild-type and mutant DRD5 constructs were generated for overexpression studies.
Results:
DRD2 overexpression broadly occurs across tumor types and is associated with a poor prognosis. Whole exome sequencing of cancer cells with acquired resistance to ONC201 revealed a de novo Q366R mutation in the DRD5 gene. Expression of Q366R DRD5 was sufficient to induce tumor cell apoptosis, consistent with a gain-of-function. DRD5 overexpression in glioblastoma cells enhanced DRD2/DRD5 heterodimers and DRD5 expression was inversely correlated with innate tumor cell sensitivity to ONC201. Investigation of archival tumor samples from patients with recurrent glioblastoma treated with ONC201 revealed that low DRD5 expression was associated with relatively superior clinical outcomes.
Conclusions:
These results implicate DRD5 as a negative regulator of DRD2 signaling and tumor sensitivity to ONC201 DRD2 antagonism.
Insights
Dopamine receptor D5 (DRD5) negatively regulates cancer cell sensitivity to the anticancer drug ONC201. Low DRD5 expression in glioblastoma patients correlates with better outcomes when treated with ONC201.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Dopamine receptor D2 (DRD2) is a target of the anticancer drug ONC201, currently in clinical trials for high-grade gliomas.
- Dopamine receptor D5 (DRD5) opposes DRD2 signaling, suggesting a potential role in cancer and drug response.
Purpose of the Study:
- To investigate DRD2 and DRD5 expression across human cancers.
- To determine the influence of DRD2/DRD5 on tumor cell sensitivity to ONC201.
- To explore the role of DRD5 in acquired resistance to ONC201.
Main Methods:
- Analysis of The Cancer Genome Atlas for DRD2/DRD5 expression.
- Cell viability assays with ONC201 across >1,000 cancer cell lines.
- Immunohistochemistry (IHC) of DRD2/DRD5 in glioblastoma tissues.
- Whole exome sequencing to identify resistance mechanisms.
- Generation of DRD5 constructs for overexpression studies.
Main Results:
- DRD2 is overexpressed in many tumors, associated with poor prognosis.
- A gain-of-function Q366R mutation in DRD5 was identified in cells with acquired ONC201 resistance.
- DRD5 overexpression enhanced DRD2/DRD5 heterodimers and decreased sensitivity to ONC201.
- Low DRD5 expression in glioblastoma patients correlated with superior clinical outcomes to ONC201.
Conclusions:
- DRD5 acts as a negative regulator of DRD2 signaling.
- DRD5 expression levels influence tumor cell sensitivity to ONC201 DRD2 antagonism.
- DRD5 is a potential predictive biomarker for ONC201 treatment response.
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