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Ashwagandha derived withanone targets TPX2-Aurora A complex: computational and experimental evidence to its
Abhinav Grover1, Rumani Singh, Ashutosh Shandilya
1Department of Biochemical Engineering and Biotechnology, Indian Institute of Technology Delhi, Hauz Khas, New Delhi, India.
Abstract:
Cancer is largely marked by genetic instability. Specific inhibition of individual proteins or signalling pathways that regulate genetic stability during cell division thus hold a great potential for cancer therapy. The Aurora A kinase is a Ser/Thr kinase that plays a critical role during mitosis and cytokinesis and is found upregulated in several cancer types. It is functionally regulated by its interactions with TPX2, a candidate oncogene. Aurora A inhibitors have been proposed as anticancer drugs that work by blocking its ATP binding site. This site is common to other kinases and hence these inhibitors lack specificity for Aurora A inhibition in particular, thus advocating the need of some alternative inhibition route. Previously, we identified TPX2 as a cellular target for withanone that selectively kill cancer cells. By computational approach, we found here that withanone binds to TPX2-Aurora A complex. In experiment, withanone treatment to cancer cells indeed resulted in dissociation of TPX2-Aurora A complex and disruption of mitotic spindle apparatus proposing this as a mechanism of the anticancer activity of withanone. From docking analysis, non-formation/disruption of the active TPX2-Aurora A association complex could be discerned. Our MD simulation results suggesting the thermodynamic and structural stability of TPX2-Aurora A in complex with withanone further substantiates the binding. We report a computational rationale of the ability of naturally occurring withanone to alter the kinase signalling pathway in an ATP-independent manner and experimental evidence in which withanone cause inactivation of the TPX2-Aurora A complex. The study demonstrated that TPX2-Aurora A complex is a target of withanone, a potential natural anticancer drug.
Insights
Withanone, a natural compound, disrupts the TPX2-Aurora A complex, offering a novel, ATP-independent cancer therapy. This targeted approach inactivates the complex, selectively killing cancer cells by interfering with mitosis.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Cancer is characterized by genetic instability, making proteins regulating cell division key therapeutic targets.
- Aurora A kinase, upregulated in cancers, is crucial for mitosis and cytokinesis.
- Existing Aurora A inhibitors lack specificity due to targeting a common ATP-binding site.
Purpose of the Study:
- To investigate withanone's mechanism of action against cancer cells.
- To explore withanone's potential as a natural anticancer drug targeting the TPX2-Aurora A complex.
- To provide a computational and experimental rationale for ATP-independent inhibition of Aurora A kinase.
Main Methods:
- Computational docking and molecular dynamics (MD) simulations to analyze withanone binding to the TPX2-Aurora A complex.
- Experimental validation using cancer cell lines to assess the effect of withanone on the TPX2-Aurora A complex and mitotic spindle.
- Analysis of TPX2-Aurora A complex dissociation and mitotic spindle disruption.
Main Results:
- Computational analysis revealed that withanone binds to the TPX2-Aurora A complex.
- Withanone treatment caused dissociation of the TPX2-Aurora A complex in cancer cells.
- Disruption of the mitotic spindle apparatus was observed, indicating a mechanism for withanone's anticancer activity.
Conclusions:
- The TPX2-Aurora A complex is a validated target for withanone.
- Withanone exhibits anticancer properties through ATP-independent inactivation of the TPX2-Aurora A complex.
- Withanone represents a promising natural compound for targeted cancer therapy.
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