bioRxiv · 10.1101/2025.11.26.690878
A clinical-stage oncology compound selectively targets drug-resistant cancers
Abstract
Re-evaluating existing clinical compounds can uncover previously unrecognized mechanisms that reshape a drugs therapeutic potential. The small molecule Procaspase-Activating Compound 1 (PAC-1) entered oncology testing as a proposed activator of caspase-driven apoptosis. Here, we show that PAC-1-driven cytotoxicity occurs in the absence of executioner caspase expression, demonstrating that its anti-cancer activity occurs via an alternative mechanism. We provide genetic, biochemical, and biophysical evidence demonstrating that PAC-1 functions as a highly selective iron chelator that eliminates cancer cells by disrupting iron homeostasis. Unexpectedly, we discovered that expression of the key chemotherapy-resistance pump MDR1 confers marked hypersensitivity to PAC-1 treatment. While PAC-1 is only weakly effluxed by MDR1 under basal conditions, this process is potentiated when PAC-1 is bound to iron. Consequently, PAC-1 induces progressive iron depletion and selective cytotoxicity in otherwise drug-resistant MDR1-expressing cancer cells. Together, these findings redefine PAC-1s mechanism-of-action and establish a framework for exploiting multidrug resistance as a therapeutic vulnerability through targeted iron starvation.
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Long, K., Bhattacharjee, D., Newman-Stonebraker, S. H., Suhr, S., Mercado, B. Q., Tighe, A., Romero, L., Thompson, S. L., Sausville, E. L., John, K. M., Julian, L., Mishra, S., Klingbeil, O., Gupta, P., Bhatt, U., Gao, A. C., Ricardo, S., Vakoc, C. R., Bornhauser, B. C., Corsello, S. M., Taylor, S. S., Holland, P. L., Sheltzer, J. M.. 2025-11-30. A clinical-stage oncology compound selectively targets drug-resistant cancers. https://doi.org/10.1101/2025.11.26.690878
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