The selenoenzyme type I iodothyronine deiodinase: a new tumor suppressor in ovarian cancer

Author:

Alfandari Adi123,Moskovich Dotan123,Weisz Avivit4,Katzav Aviva4,Kidron Debora34,Beiner Mario35,Josephy Dana5,Asali Aula5,Hants Yael5,Yagur Yael6,Weitzner Omer6,Ellis Martin13,Itchaki Gilad13,Ashur‐Fabian Osnat123ORCID

Affiliation:

1. Translational Oncology Laboratory Hematology Institute, Meir Medical Center Kfar Saba Israel

2. Department of Human Molecular Genetics and Biochemistry, Faculty of Medicine Tel Aviv University Israel

3. School of Medicine, Faculty of Medical and Health Sciences Tel Aviv University Israel

4. Department of Pathology Meir Medical Center Kfar Saba Israel

5. Division of Gynecologic Oncology Meir Medical Center Kfar Saba Israel

6. Department of Obstetrics and Gynecology Meir Medical Center Kfar Saba Israel

Abstract

The selenoenzyme type I iodothyronine deiodinase (DIO1) catalyzes removal of iodine atoms from thyroid hormones. Although DIO1 action is reported to be disturbed in several malignancies, no work has been conducted in high‐grade serous ovarian carcinoma (HGSOC), the most lethal gynecologic cancer. We studied DIO1 expression in HGSOC patients [The Cancer Genome Atlas (TCGA) data and tumor tissues], human cell lines (ES‐2 and Kuramochi), normal Chinese hamster ovarian cells (CHO‐K1), and normal human fallopian tube cells (FT282 and FT109). To study its functional role, DIO1 was overexpressed, inhibited [by propylthiouracil (PTU)], or knocked down (KD), and cell count, proliferation, apoptosis, cell viability, and proteomics analysis were performed. Lower DIO1 levels were observed in HGSOC compared to normal cells and tissues. TCGA analyses confirmed that low DIO1 mRNA expression correlated with worse survival and therapy resistance in patients. Silencing or inhibiting the enzyme led to enhanced ovarian cancer proliferation, while an opposite effect was shown following DIO1 ectopic expression. Proteomics analysis in DIO1‐KD cells revealed global changes in proteins that facilitate tumor metabolism and progression. In conclusion, DIO1 expression and ovarian cancer progression are inversely correlated, highlighting a tumor suppressive role for this enzyme and its potential use as a biomarker in this disease.

Funder

Cancer Biology Research Center, Tel Aviv University

Publisher

Wiley

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