Nrf2 activity as a potential biomarker for the pan-epigenetic anticancer agent, RRx-001
Shoucheng Ning1, Thillai Veerapazham Sekar2, Jan Scicinski3
1Department of Radiation Oncology Stanford University Medical Center Stanford, CA 94305, USA.
Abstract:
Nuclear factor erythroid 2-related factor 2 (Nrf2) is a master regulatory transcription factor that plays an important role in the antioxidant response pathway against anticancer drug-induced cytotoxic effects. RRx-001 is a new anticancer agent that generates reactive oxygen and nitrogen species, and leads to epigenetic alterations in cancer cells. Here we report the RRx-001 mediated nuclear translocation of Nrf2 and the activation of expression of its downstream enzymes HO-1 and NQO1 in tumor cells. Inhibition of intrinsic Nrf2 expression by Nrf2-specific siRNA increased cell sensitivity to RRx-001. Molecular imaging of tumor cells co-expressing pARE-Firefly luciferase and pCMV-Renilla luciferase-mRFP in vitro and in vivo in mice revealed that RRx-001 significantly increased ARE-FLUC signal in cells in a dose- and time-dependent manner, suggesting that RRx-001 is an effective activator of the Nrf2-ARE signaling pathway. The pre-treatment level of ARE-FLUC signal in cells, reflecting basal activity of Nrf2, negatively correlated with the tumor response to RRx-001. The results support the concept that RRx-001 activates Nrf2-ARE antioxidant signaling pathways in tumor cells. Hence measurement of Nrf2-mediated activation of downstream target genes through ARE signaling may constitute a useful molecular biomarker for the early prediction of response to RRx-001 treatment, and thereby guide therapeutic decision-making.
Insights
The anticancer drug RRx-001 activates the Nrf2-ARE pathway in tumor cells, enhancing antioxidant responses. Measuring Nrf2 activity may predict treatment effectiveness for RRx-001 therapy.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Nuclear factor erythroid 2-related factor 2 (Nrf2) is crucial for antioxidant defense against chemotherapy.
- RRx-001 is a novel anticancer agent inducing reactive species and epigenetic changes.
Purpose of the Study:
- To investigate RRx-001's effect on the Nrf2-ARE signaling pathway.
- To determine if Nrf2 activation influences RRx-001 efficacy.
- To explore Nrf2-ARE signaling as a predictive biomarker for RRx-001.
Main Methods:
- Assessed RRx-001-induced Nrf2 nuclear translocation and downstream gene (HO-1, NQO1) expression.
- Utilized Nrf2-specific siRNA to evaluate Nrf2's role in RRx-001 sensitivity.
- Employed molecular imaging (ARE-Firefly luciferase) in vitro and in vivo to quantify Nrf2-ARE pathway activation.
Main Results:
- RRx-001 promoted Nrf2 nuclear translocation and upregulated HO-1 and NQO1 expression in tumor cells.
- Nrf2 inhibition sensitized cells to RRx-001, confirming Nrf2's protective role.
- RRx-001 dose- and time-dependently increased ARE-luciferase signaling, indicating pathway activation.
- Basal Nrf2 activity negatively correlated with tumor response to RRx-001.
Conclusions:
- RRx-001 effectively activates the Nrf2-ARE antioxidant signaling pathway in tumor cells.
- Nrf2-ARE pathway activation is a key mechanism of RRx-001 action.
- ARE signaling serves as a potential predictive biomarker for RRx-001 treatment response, aiding therapeutic decisions.
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