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Novel DNA topoisomerase IIα inhibitors from combined ligand- and structure-based virtual screening
Malgorzata N Drwal1, Jessica Marinello2, Stefano G Manzo2
1Department of Pharmacology, School of Medical Sciences, UNSW Australia, Sydney, NSW, Australia.
Abstract:
DNA topoisomerases are enzymes responsible for the relaxation of DNA torsional strain, as well as for the untangling of DNA duplexes after replication, and are important cancer drug targets. One class of topoisomerase inhibitors, "poisons", binds to the transient enzyme-DNA complex which occurs during the mechanism of action, and inhibits the religation of DNA. This ultimately leads to the accumulation of DNA double strand breaks and cell death. Different types of topoisomerases occur in human cells and several poisons of topoisomerase I and II are widely used clinically. However, their use is compromised by a variety of side effects. Recent studies confirm that the inhibition of the α-isoform of topoisomerase II is responsible for the cytotoxic effect, whereas the inhibition of the β-isoform leads to development of adverse drug reactions. Thus, the discovery of agents selective for topoisomerase IIα is an important strategy for the development of topoisomerase II poisons with improved clinical profiles. Here, we present a computer-aided drug design study leading to the identification of structurally novel topoisomerase IIα poisons. The study combines ligand- and structure-based drug design methods including pharmacophore models, homology modelling, docking, and virtual screening of the National Cancer Institute compound database. From the 8 compounds identified from the computational work, 6 were tested for their capacity to poison topoisomerase II in vitro: 4 showed selective inhibitory activity for the α- over the β-isoform and 3 of these exhibited cytotoxic activity. Thus, our study confirms the applicability of computer-aided methods for the discovery of novel topoisomerase II poisons, and presents compounds which could be investigated further as selective topoisomerase IIα inhibitors.
Insights
This study used computer-aided drug design to find new cancer drugs targeting topoisomerase II alpha. The novel compounds selectively inhibit the alpha isoform, showing promise for reduced side effects and improved cancer treatment.
Area of Science:
- Biochemistry
- Pharmacology
- Computational Chemistry
Background:
- DNA topoisomerases are crucial enzymes for DNA replication and are significant cancer drug targets.
- Topoisomerase II poisons are used clinically but cause side effects due to inhibiting both alpha and beta isoforms.
- Selective inhibition of topoisomerase II alpha is key to developing safer and more effective cancer therapies.
Purpose of the Study:
- To identify novel topoisomerase II alpha selective poisons using computer-aided drug design.
- To develop topoisomerase II poisons with improved clinical profiles and reduced adverse effects.
- To validate computational methods for discovering new anti-cancer agents.
Main Methods:
- Employed a combination of ligand- and structure-based drug design techniques.
- Utilized pharmacophore modeling, homology modeling, and molecular docking.
- Performed virtual screening of the National Cancer Institute compound database.
Main Results:
- Identified 8 novel compounds with potential topoisomerase II poisoning activity.
- 4 out of 6 tested compounds demonstrated selective inhibition of topoisomerase II alpha over beta.
- 3 of the selective inhibitors exhibited significant cytotoxic activity.
Conclusions:
- Computer-aided drug design is effective for discovering novel topoisomerase II poisons.
- The identified compounds are promising candidates for further investigation as selective topoisomerase II alpha inhibitors.
- This approach offers a strategy for developing cancer drugs with enhanced efficacy and safety profiles.
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