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Updated: Oct 14, 2025

Simple and Fast Rolling Circle Amplification-Based Detection of Topoisomerase 1 Activity in Crude Biological Samples
Published on: December 2, 2022
Small molecule targeting topoisomerase 3β for cancer therapy
Xue Zhang1, Lei Wang1, Qi Zhang1
1Center for Chemical Biology, Institute of Interdisciplinary Integrative Medicine Research, Shanghai University of Traditional Chinese Medicine, No.1200 Cailun Road, Shanghai 201203, PR China.
Abstract:
DNA topoisomerases are proved cancer therapeutic targets with clinically successful anticancer drugs for decades. However, the role of RNA topoisomerase (TOP3β) remained mysterious especially in cancer, and no targeted agent has been reported yet. In a target identification assay of anti-cancer compound using a modified DrugTargetSeqR strategy, mutation of TOP3B was detected in cancer cells acquired resistance to cinobufagin (CBG), a key compound of Huachansu that has been approved for cancer therapy in China. We demonstrated that CBG directly engaged with TOP3β, and promoted TOP3β depletion in wildtype but not mutant cancer cells. Notably, knockout of TOP3β in cancer cells significantly reduced tumor enlargement but not initiation, and inhibited colony formation upon nutrient deprivation. We also demonstrated that CBG induced formation of stress granule, RNA-loop and asymmetric DNA damages in cancer cells, and all these phenotypes were significantly attenuated in TOP3B knockout cells. Of note, examination of a panel of cancer cell lines revealed associations among cell growth inhibition and induction of DNA damage as well as TOP3B depletion upon CBG treatment. Our findings not only highlighted TOP3β as a promising therapeutic target of cancer, but also identified CBG as a lead chemical inhibitor of TOP3β for cancer therapy.
Insights
This study identifies RNA topoisomerase (TOP3β) as a novel cancer target. The compound cinobufagin (CBG) inhibits TOP3β, reducing tumor growth and inducing DNA damage in cancer cells.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- DNA topoisomerases are established cancer drug targets.
- The role of RNA topoisomerase TOP3β in cancer and targeted therapies remains largely unexplored.
Purpose of the Study:
- To investigate the role of TOP3β in cancer resistance and identify novel therapeutic targets.
- To evaluate cinobufagin (CBG) as a potential TOP3β inhibitor.
Main Methods:
- Utilized a modified DrugTargetSeqR strategy for target identification.
- Employed gene knockout and cell line analysis to assess TOP3β function and CBG efficacy.
- Investigated cellular responses including stress granule formation and DNA damage induction.
Main Results:
- Mutations in TOP3B were associated with resistance to CBG in cancer cells.
- CBG directly binds and promotes the depletion of TOP3β in wildtype cells.
- TOP3β knockout reduced tumor growth and colony formation, and CBG-induced DNA damage and stress granule formation were attenuated in TOP3B knockout cells.
Conclusions:
- TOP3β is a promising therapeutic target for cancer treatment.
- CBG is identified as a lead chemical inhibitor of TOP3β with potential for cancer therapy.
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