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Molecular docking studies on thirteen fluoroquinolines with human topoisomerase II a and b
Ashwini Khanderao Jadhav1, Sankunny Mohan Karuppayil2
1School of Life Sciences (DST-FIST and UGC-SAP Sponsored), SRTM University (NAAC Accredited with 'A' Grade), Nanded, Maharashtra, 431606, India.
Abstract:
DNA relaxation is an important step in DNA replication. DNA topoisomerases play a major role in DNA relaxation. Hence these enzymes are important targets for cancer drugs. DNA topoisomerase inhibitors bind to the transient enzyme-DNA complex and inhibit DNA replication. Various inhibitors of topoisomerase I and II are prescribed as drugs. Topoisomerase II is considered as an important target for the development of anticancer drugs. In this study we have demonstrated molecular docking of thirteen fluoroquinolines with human DNA topoisomerase II alpha (a) and beta (b). Fluoroquinolines are broad spectrum antibacterial antibiotics and it is highly effective against various bacterial infections. Some of the fluoroquinolines like moxifloxacin exert antifungal as well as anti-cancer activity. It forms complexes with topoisomerase II a and are responsible for stoppage DNA replication. Molecular docking studies showed that fluoroquinolines has shown formation of hydrogen bond and good binding affinity with human Topo2a and Topo2b. Hence FQs may inhibit the activity of enzyme topoisomerase by binding at its active site. Ofloxacin, sparafloxacin, ciprofloxacin and moxifloxacin are predicted to be the most potent inhibitors among the thirteen FQs docked. GLN773, ASN770, LYS723 and TRP931 amino acid residues of Topo2a are involved in binding with FQs while ASP479, SER480, ARG820, ARG503, LYS456 and GLN778 amino acid residues of Topo2b are involved in binding with FQs. Our in silico study suggests that fluoroquinolines could be repositioned as DNA topoisomerase II inhibitors hence can be used as anticancer drugs. In vitro and in vivo experiments need to be done to confirm their efficacy.
Insights
This study explored fluoroquinolines as potential anticancer drugs by examining their interaction with DNA topoisomerase II. Molecular docking suggests these compounds can inhibit the enzyme, warranting further investigation for cancer therapy.
Area of Science:
- Biochemistry
- Molecular Biology
- Pharmacology
Background:
- DNA topoisomerases are crucial for DNA replication and are key targets for anticancer drug development.
- DNA topoisomerase II (Topo2) is particularly important, and its inhibitors block DNA replication.
- Fluoroquinolines (FQs), known for antibacterial properties, also exhibit potential anticancer activity.
Purpose of the Study:
- To investigate the potential of thirteen fluoroquinolines as inhibitors of human DNA topoisomerase II alpha (Topo2a) and beta (Topo2b).
- To evaluate the binding affinity and interactions of fluoroquinolines with Topo2a and Topo2b using molecular docking.
Main Methods:
- In silico molecular docking of thirteen fluoroquinolines against human Topo2a and Topo2b.
- Analysis of hydrogen bond formation and binding affinity between fluoroquinolines and Topo2a/Topo2b.
Main Results:
- Fluoroquinolines demonstrated good binding affinity and hydrogen bond formation with both Topo2a and Topo2b.
- Ofloxacin, sparafloxacin, ciprofloxacin, and moxifloxacin were identified as potentially potent inhibitors.
- Specific amino acid residues in Topo2a and Topo2b were identified as key binding sites for fluoroquinolines.
Conclusions:
- Fluoroquinolines show promise as inhibitors of DNA topoisomerase II.
- Repurposing fluoroquinolines as anticancer agents targeting Topo2 is a viable strategy.
- Further in vitro and in vivo studies are necessary to validate the efficacy of these compounds as anticancer drugs.
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