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GT198 Is a Target of Oncology Drugs and Anticancer Herbs
Junfeng Pang1, Jie Gao2, Liyong Zhang3
1Georgia Cancer Center, Medical College of Georgia, Augusta University, Augusta, GA, United States.
Abstract:
Tumor angiogenesis is a hallmark of cancer. Therapeutic drug inhibitors targeting angiogenesis are clinically effective. We have previously identified GT198 (gene symbol PSMC3IP, also known as Hop2) as an oncoprotein that induces tumor angiogenesis in human cancers, including oral cancer. In this study, we show that the GT198 protein is a direct drug target of more than a dozen oncology drugs and several clinically successful anticancer herbs. GT198 is a DNA repair protein that binds to DNA. Using an in vitro DNA-binding assay, we tested the approved oncology drug set VII from the National Cancer Institute containing 129 oncology drugs. Identified GT198 inhibitors include but are not limited to mitoxantrone, doxorubicin, paclitaxel, etoposide, dactinomycin, and imatinib. Paclitaxel and etoposide have higher binding affinities, whereas doxorubicin has higher binding efficacy due to competitive inhibition. GT198 shares protein sequence homology with DNA topoisomerases, which are known drug targets, so that GT198 is likely a new drug target previously unrecognized. To seek more powerful GT198 inhibitors, we further tested several anticancer herbal extracts. The positive anticancer herbs with high affinity and high efficacy are all clinically successful ones, including allspice from Jamaica, Gleditsia sinensis or honey locust from China, and BIRM from Ecuador. Partial purification of allspice using an organic chemical approach demonstrated great feasibility of natural product purification, when the activity is monitored by the in vitro DNA-binding assay using GT198 as a target. Together, our study reveals GT198 as a new targeting mechanism for existing oncology drugs. The study also delivers an excellent drug target suitable for compound identification and natural product purification. In particular, this study opens an opportunity to rapidly identify drugs with high efficacy and low toxicity from nature.
Insights
GT198, a DNA repair protein, drives tumor angiogenesis and is a novel drug target. Existing oncology drugs and natural compounds like allspice inhibit GT198, offering new cancer treatment strategies.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Tumor angiogenesis is a critical hallmark of cancer, and targeting it therapeutically is effective.
- GT198 (PSMC3IP/Hop2) was previously identified as an oncoprotein that promotes tumor angiogenesis in human cancers, including oral cancer.
Purpose of the Study:
- To identify GT198 as a direct drug target for existing oncology drugs and natural products.
- To explore GT198 as a novel therapeutic target for cancer treatment.
Main Methods:
- An in vitro DNA-binding assay was used to screen the National Cancer Institute's approved oncology drug set VII (129 drugs).
- Anticancer herbal extracts were tested for their ability to inhibit GT198.
- Partial purification of allspice was performed using organic chemistry, monitoring activity via the DNA-binding assay.
Main Results:
- GT198 was identified as a direct drug target for multiple oncology drugs, including mitoxantrone, doxorubicin, paclitaxel, etoposide, dactinomycin, and imatinib.
- Paclitaxel and etoposide showed high binding affinities, while doxorubicin exhibited high binding efficacy.
- Clinically successful anticancer herbs, such as allspice, Gleditsia sinensis, and BIRM, demonstrated high affinity and efficacy against GT198.
- Partial purification of allspice confirmed the feasibility of natural product purification targeting GT198.
Conclusions:
- GT198 is a novel drug target, offering a new mechanism for existing oncology drugs.
- The study validates GT198 as a target for compound identification and natural product drug discovery.
- This research opens avenues for identifying potent and low-toxicity drugs from natural sources.
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