Dynophore-based approach in virtual screening: A case of human DNA topoisomerase IIα

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Abstract

In this study, we utilized human DNA topoisomerase IIα as a model target to outline a dynophore-based approach to catalytic inhibitor design. Based on MD simulations of a known catalytic inhibitor and the native ATP ligand analog, AMP-PNP, we derived a joint dynophore model that supplements the static structure-based-pharmacophore information with a dynamic component. Subsequently, derived pharmacophore models were employed in a virtual screening campaign of a library of natural compounds. Experimental evaluation identified flavonoid compounds with promising topoisomerase IIα catalytic inhibition and binding studies confirmed interaction with the ATPase domain. We constructed a binding model through docking and extensively investigated it with molecular dynamics MD simulations, essential dynamics, and MM- GBSA free energy calculations, thus reconnecting the new results to the initial dynophore-based screening model. We not only demonstrate a new design strategy that incorporates a dynamic component of molecular recognition, but also highlight new derivates in the established flavonoid class of topoisomerase II inhibitors.

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Janežič, M., Valjavec, K., Loboda, K. B., Herlah, B., Ogris, I., Kozorog, M., … Perdih, A. (2021). Dynophore-based approach in virtual screening: A case of human DNA topoisomerase IIα. International Journal of Molecular Sciences, 22(24). https://doi.org/10.3390/ijms222413474

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