Analysis of Non-Peptidic Compounds as Potential Malarial Inhibitors against <i>Plasmodial</i> Cysteine Proteases via Integrated Virtual Screening Workflow
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Falcipain-2 and falcipain-3, haemoglobin degrading enzymes in <i>Plasmodium falciparum</i>, are validated drug targets for the development of effective inhibitors against malaria. However, no commercial drug targeting falcipains has been developed despite their central role in the life-cycle of the parasites. In this work, <i>in silico</i> approaches are used to identify key structural elements that control the binding and selectivity of a diverse set of non-peptidic compounds onto FP-2, FP-3 and homologs from other <i>Plasmodium</i> species as well as human cathepsins. Hotspot residues and the underlying non-covalent interactions, important for the binding of ligands, are identified by interaction fingerprint analysis between the proteases and 2-cyanopyridine derivatives (best hits). It is observed that the size and chemical type of substituent groups within 2-cyanopyridine derivatives determine the strength of protein-ligand interactions. This research presents novel results that can further be exploited in the structure-based molecular guided design of more potent antimalarial drugs.



