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Oncogene ; 40(44): 6248-6257, 2021 11.
Article in English | MEDLINE | ID: mdl-34556811

ABSTRACT

The enzyme iodothyronine deiodinase type 3 (DIO3) contributes to cancer proliferation by inactivating the tumor-suppressive actions of thyroid hormone (T3). We recently established DIO3 involvement in the progression of high-grade serous ovarian cancer (HGSOC). Here we provide a link between high DIO3 expression and lower survival in patients, similar to common disease markers such as Ki67, PAX8, CA-125, and CCNE1. These observations suggest that DIO3 is a logical target for inhibition. Using a DIO3 mimic, we developed original DIO3 inhibitors that contain a core of dibromomaleic anhydride (DBRMD) as scaffold. Two compounds, PBENZ-DBRMD and ITYR-DBRMD, demonstrated attenuated cell counts, induction in apoptosis, and a reduction in cell proliferation in DIO3-positive HGSOC cells (OVCAR3 and KURAMOCHI), but not in DIO3-negative normal ovary cells (CHOK1) and OVCAR3 depleted for DIO3 or its substrate, T3. Potent tumor inhibition with a high safety profile was further established in HGSOC xenograft model, with no effect in DIO3-depleted tumors. The antitumor effects are mediated by downregulation in an array of pro-cancerous proteins, the majority of which known to be repressed by T3. To conclude, using small molecules that specifically target the DIO3 enzyme we present a new treatment paradigm for ovarian cancer and potentially other DIO3-dependent malignancies.


Subject(s)
Carcinoma, Ovarian Epithelial/drug therapy , Cystadenocarcinoma, Serous/drug therapy , Enzyme Inhibitors/administration & dosage , Iodide Peroxidase/metabolism , Small Molecule Libraries/administration & dosage , Animals , Carcinoma, Ovarian Epithelial/enzymology , Carcinoma, Ovarian Epithelial/pathology , Cell Line, Tumor , Cell Proliferation/drug effects , Cell Survival/drug effects , Cystadenocarcinoma, Serous/enzymology , Cystadenocarcinoma, Serous/genetics , Cystadenocarcinoma, Serous/pathology , Down-Regulation , Enzyme Inhibitors/chemical synthesis , Enzyme Inhibitors/pharmacology , Female , Gene Expression Regulation, Neoplastic/drug effects , Gene Knockdown Techniques , Humans , Iodide Peroxidase/antagonists & inhibitors , Iodide Peroxidase/genetics , Mice , Molecular Mimicry , Small Molecule Libraries/chemical synthesis , Small Molecule Libraries/pharmacology , Xenograft Model Antitumor Assays
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