Proteome-guided drug discovery maps and mitigates therapeutic degrader toxicity.

Journal: Nature chemical biology
Published Date:
(1)

Abstract

Heterobifunctional targeted degraders (HBDs) enable potent removal of protein targets but their clinical success can be hindered by de novo toxicity inherent to their bivalent chemistry. Here we introduce a drug discovery framework that exploits high-throughput proteomics to map and mitigate toxicity mechanisms of emerging drug modalities. Exposing androgen receptor (AR)-negative cells to a library of experimental AR-HBDs indicated for treatment-resistant prostate cancer linked widespread proteomic responses to hepatotoxicity of phthalimide degraders. Machine learning trained on proteomes mapped the primary toxicity mechanism to inhibition of electron transport chain complex I and identified safer analogs where a minor modification in the linker region mitigated off-target engagement. Proteome-optimized degraders displayed decreased hepatotoxicity, enhanced specificity and antitumor activity against treatment-resistant prostate cancer xenografts. Our findings establish a versatile framework for developing safer medicines and highlight the transformative potential of proteome-guided drug discovery.

Authors

Keywords

No keywords available for this article.