Orpinolide disrupts a leukemic dependency on cholesterol transport by inhibiting OSBP

Metabolic alterations in cancer precipitate in associated dependencies that can be therapeutically exploited. To meet this goal, natural product-inspired small molecules can provide a resource of invaluable chemotypes. Here, we identify orpinolide, a synthetic withanolide analog with pronounced anti...

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Veröffentlicht in:Nature chemical biology 2024-06
Hauptverfasser: Cigler, Marko, Imrichova, Hana, Frommelt, Fabian, Caramelle, Lucie, Depta, Laura, Rukavina, Andrea, Kagiou, Chrysanthi, Hannich, J Thomas, Mayor-Ruiz, Cristina, Superti-Furga, Giulio, Sievers, Sonja, Forrester, Alison, Laraia, Luca, Waldmann, Herbert, Winter, Georg E
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Sprache:eng
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Zusammenfassung:Metabolic alterations in cancer precipitate in associated dependencies that can be therapeutically exploited. To meet this goal, natural product-inspired small molecules can provide a resource of invaluable chemotypes. Here, we identify orpinolide, a synthetic withanolide analog with pronounced antileukemic properties, via orthogonal chemical screening. Through multiomics profiling and genome-scale CRISPR-Cas9 screens, we identify that orpinolide disrupts Golgi homeostasis via a mechanism that requires active phosphatidylinositol 4-phosphate signaling at the endoplasmic reticulum-Golgi membrane interface. Thermal proteome profiling and genetic validation studies reveal the oxysterol-binding protein OSBP as the direct and phenotypically relevant target of orpinolide. Collectively, these data reaffirm sterol transport as a therapeutically actionable dependency in leukemia and motivate ensuing translational investigation via the probe-like compound orpinolide.
ISSN:1552-4450
1552-4469
1552-4469
DOI:10.1038/s41589-024-01614-4