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Published on: May 5, 2014
Discovery and cellular stress pathway analysis of 1,4-naphthoquinone derivatives with novel, highly potent
Sajal K Ghosh1, Abhishek Ganta1, Remco A Spanjaard2,3
1Cancer Center, Departments of Otolaryngology, Dermatology and Biochemistry, Boston University School of Medicine, 80 East Concord Street, Boston, MA, 02118, USA.
Background:
Chemotherapy and targeted therapies have made important strides in cancer treatment yet they often fail and new therapies are still needed. Here, we employed a phenotypic screen to identify and analyze the mechanism of action of novel small molecules that interfere with critical pathways involved in tumor cell growth, using chemoresistant A375 melanoma cells as a model.
Methods:
Cell culture studies were performed in ATCC-recommended media. Compounds, and compound libraries were obtained from Boston University or purchased commercially. Effects on A375 cell viability, proliferation and morphology were determined by Celigo Image Cytometer and viability staining. Anticancer activity of the lead compound was tested in a xenograft nude mouse model. Signaling and cell death pathways were analyzed by SDS-PAGE and immunoblotting, and/or fluorescence microscopy.
Results:
After evaluating 4477 compounds, one hit compound CB533 was identified that caused significant reduction of A375 cell growth. CB533 is an unexplored 1,4-naphthoquinone (NQ) derivative which unlike 1,4-NQ, induced rapid cell death without generating reactive oxygen species (ROS). Structure-activity relationship analysis showed that a pyrrolidine in the 1,4-NQ nucleus in lead compound Pyr-1 yielded optimal activity. CB533 and Pyr-1 had growth-suppressing effects on a large variety of chemotherapy-resistant cancer cell lines in the nano to picomolar range. Pyr-1 also significantly reduced growth of MDA-MB-231 breast cancer cells in nude mice. Pyr-1 rapidly induced activation of major stress pathways and autophagy, which was efficiently blocked by ERK, and somewhat by PI3K inhibitors.
Conclusion:
CB533 and lead Pyr-1 represent novel broad-spectrum, anticancer compounds that are up to 1000-fold more potent than plumbagin, a natural 1,4-NQ with known anticancer activity. Since the growth suppression activities of CB533 and Pyr-1 are unaffected by the chemotherapy resistance of cancer cells, these compounds have promising therapeutic potential. The pyrrolidine in the 3 position of the 1,4-NQ nucleus of Pyr-1 is a critical component of the pharmacophore. Pyr-1-induced cellular stress was mediated by an ERK, and to a lesser extent by an AKT-dependent pathway without involving apoptosis. Our data suggest that Pyr-1 derives its greatly enhanced antitumor activity via mimicking ROS-induced stress signaling without generating ROS, and likely committing cells to autophagy.
Insights
Researchers identified novel anticancer compounds, CB533 and Pyr-1, that effectively inhibit tumor growth in chemoresistant cancer cells. These compounds show potent, broad-spectrum activity by inducing stress and autophagy without generating reactive oxygen species (ROS).
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Chemotherapy and targeted therapies are crucial but often fail, necessitating novel anticancer treatments.
- Chemoresistant melanoma serves as a model for identifying new therapeutic agents.
- Phenotypic screening is a valuable approach for discovering small molecules targeting cancer pathways.
Purpose of the Study:
- To identify novel small molecules with anticancer activity using a phenotypic screen.
- To analyze the mechanism of action of newly identified compounds in chemoresistant cancer cells.
- To evaluate the therapeutic potential of lead compounds in preclinical models.
Main Methods:
- Phenotypic screening of 4477 compounds against A375 melanoma cells.
- Assessment of cell viability, proliferation, and morphology using Celigo Image Cytometer.
- In vivo efficacy testing of the lead compound in a xenograft nude mouse model.
- Analysis of cellular signaling and death pathways via SDS-PAGE, immunoblotting, and fluorescence microscopy.
Main Results:
- One compound, CB533, a 1,4-naphthoquinone (NQ) derivative, significantly reduced A375 cell growth without inducing reactive oxygen species (ROS).
- The lead compound, Pyr-1, demonstrated potent, broad-spectrum growth suppression against various chemotherapy-resistant cancer cell lines (nano to picomolar range).
- Pyr-1 significantly inhibited tumor growth in a mouse model and activated stress pathways and autophagy, dependent on ERK and PI3K signaling.
Conclusions:
- CB533 and Pyr-1 are novel, broad-spectrum anticancer compounds, significantly more potent than plumbagin.
- These compounds exhibit therapeutic potential due to their efficacy against chemotherapy-resistant cancers.
- Pyr-1's enhanced activity stems from mimicking ROS-induced stress signaling without ROS generation, promoting autophagy via ERK/AKT pathways.
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