Targeting C4-Demethylating Genes in the Cholesterol Pathway Sensitizes Cancer Cells to EGF Receptor Inhibitors via Increased EGF Receptor Degradation
Targeting C4-Demethylating Genes in the Cholesterol Pathway Sensitizes Cancer Cells to EGF Receptor Inhibitors via Increased EGF Receptor Degradation
AbstractPersistent signaling by the oncogenic EGF receptor (EGFR) is a major source of cancer resistance to EGFR targeting. We established that inactivation of 2 sterol biosynthesis pathway genes, SC4MOL (sterol C4-methyl oxidase–like) and its partner, NSDHL (NADP-dependent steroid dehydrogenase–like), sensitized tumor cells to EGFR inhibitors. Bioinformatics modeling of interactions for the sterol pathway genes in eukaryotes allowed us to hypothesize and then extensively validate an unexpected role for SC4MOL and NSDHL in controlling the signaling, vesicular trafficking, and degradation of EGFR and its dimerization partners, ERBB2 and ERBB3. Metabolic block upstream of SC4MOL with ketoconazole or CYP51A1 siRNA rescued cancer cell viability and EGFR degradation. Inactivation of SC4MOL markedly sensitized A431 xenografts to cetuximab, a therapeutic anti-EGFR antibody. Analysis of Nsdhl-deficient Bpa1H/+ mice confirmed dramatic and selective loss of internalized platelet-derived growth factor receptor in fibroblasts, and reduced activation of EGFR and its effectors in regions of skin lacking NSDHL.Significance: This work identifies a critical role for SC4MOL and NSDHL in the regulation of EGFR signaling and endocytic trafficking and suggests novel strategies to increase the potency of EGFR antagonists in tumors. Cancer Discov; 3(1); 96–111. ©2012 AACR.This article is highlighted in the In This Issue feature, p. 1
- The Ohio State University United States
- Fox Chase Cancer Center United States
- University of Washington Medical Center United States
- Johns Hopkins University United States
- Temple University Health System United States
Male, 3-Hydroxysteroid Dehydrogenases, Cetuximab, Antineoplastic Agents, Mice, Transgenic, Mice, SCID, Antibodies, Monoclonal, Humanized, Endocytosis, Mixed Function Oxygenases, ErbB Receptors, Mice, Protein Transport, Cholesterol, Cell Line, Tumor, Neoplasms, Animals, Humans
Male, 3-Hydroxysteroid Dehydrogenases, Cetuximab, Antineoplastic Agents, Mice, Transgenic, Mice, SCID, Antibodies, Monoclonal, Humanized, Endocytosis, Mixed Function Oxygenases, ErbB Receptors, Mice, Protein Transport, Cholesterol, Cell Line, Tumor, Neoplasms, Animals, Humans
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