Ivermectin inhibits HSP27 and potentiates efficacy of oncogene targeting in tumor models.
basic_science · Level V
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- Record sourced from PubMed, PMID 31845908.
- Also identified by DOI 10.1172/JCI130819 and PMC identifier 6994194.
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Abstract
HSP27 is highly expressed in, and supports oncogene addiction of, many cancers. HSP27 phosphorylation is a limiting step for activation of this protein and a target for inhibition, but its highly disordered structure challenges rational structure-guided drug discovery. We performed multistep biochemical, structural, and computational experiments to define a spherical 24-monomer complex composed of 12 HSP27 dimers with a phosphorylation pocket flanked by serine residues between their N-terminal domains. Ivermectin directly binds this pocket to inhibit MAPKAP2-mediated HSP27 phosphorylation and depolymerization, thereby blocking HSP27-regulated survival signaling and client-oncoprotein interactions. Ivermectin potentiated activity of anti-androgen receptor and anti-EGFR drugs in prostate and EGFR/HER2-driven tumor models, respectively, identifying a repurposing approach for cotargeting stress-adaptive responses to overcome resistance to inhibitors of oncogenic pathway signaling.
Medical subject headings
- Heat-Shock Proteins
- Ivermectin
- Molecular Chaperones
- Neoplasms, Experimental
- Erb-b2 Receptor Tyrosine Kinases