ACS Chemical Biology · 2015 · 39 citations · 32 references
Drug TargetWfa AnalogsP97 ActivityPharmacotherapyChemical BiologyMedicinal ChemistryProteomicsInhibitory ActivityProtein FunctionBiochemistryMechanism Of ActionBiochemical InteractionBiomolecular InteractionPharmacologyAaa+ Chaperone P97Proteostasis ModulationFunctional SelectivityNatural SciencesMedicineDrug Discovery
Understanding the mode of action (MOA) of many natural products can be puzzling with mechanistic clues that seem to lack a common thread. One such puzzle lies in the evaluation of the antitumor properties of the natural product withaferin A (WFA). A variety of seemingly unrelated pathways have been identified to explain its activity, suggesting a lack of selectivity. We now show that WFA acts as an inhibitor of the chaperone, p97, both in vitro and in cell models in addition to inhibiting the proteasome in vitro. Through medicinal chemistry, we have refined the activity of WFA toward p97 and away from the proteasome. Subsequent studies indicated that these WFA analogs retained p97 activity and cytostatic activity in cell models, suggesting that the modes of action reported for WFA could be connected by proteostasis modulation. Through this endeavor, we highlight how the parallel integration of medicinal chemistry with chemical biology offers a potent solution to one of natures' intriguing molecular puzzles.
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An efficient one-step site-directed and site-saturation mutagenesis protocol
Lei Zheng · Nucleic Acids Research · 2004 · 1.2K citations
Withaferin A is a potent inhibitor of angiogenesis
Royce Mohan, Hans J. Hammers, Paola Bargagna‐Mohan et al. · Angiogenesis · 2004 · 380 citations