Delta‐6 desaturase FADS2 is a tumor‐promoting factor in cholangiocarcinoma

Author:

Hasegawa Kohsei123,Fujimori Haruna1ORCID,Nakatani Kohta4,Takahashi Masatomo4,Izumi Yoshihiro4,Bamba Takeshi4,Nakamura‐Shima Mao1,Shibuya‐Takahashi Rie1,Mochizuki Mai1,Wakui Yuta5,Abue Makoto5,Iwai Wataru5,Fukushi Daisuke6,Satoh Kennichi6,Yamaguchi Kazunori7,Shindo Norihisa8,Yasuda Jun7,Asano Naoki19,Imai Takayuki2,Asada Yukinori2,Katori Yukio3,Tamai Keiichi1ORCID

Affiliation:

1. Division of Cancer Stem Cell Miyagi Cancer Center Research Institute Natori Miyagi Japan

2. Department of Head and Neck Surgery Miyagi Cancer Center Natori Miyagi Japan

3. Department of Otolaryngology‐Head and Neck Surgery Tohoku University Graduate School of Medicine Sendai Miyagi Japan

4. Division of Metabolomics, Medical Research Center for High Depth Omics Medical Institute of Bioregulation, Kyushu University Fukuoka Japan

5. Division of Gastroenterology Miyagi Cancer Center Natori Miyagi Japan

6. Division of Gastroenterology Tohoku Medical and Pharmaceutical University Sendai Miyagi Japan

7. Division of Molecular and Cellular Oncology Miyagi Cancer Center Research Institute Natori Miyagi Japan

8. Division of Cancer Chromosome Biology Unit Miyagi Cancer Center Research Institute Natori Miyagi Japan

9. Division of Gastroenterology Tohoku University Graduate School of Medicine Sendai Japan

Abstract

AbstractCholangiocarcinoma is a fatal disease with limited therapeutic options. We screened genes required for cholangiocarcinoma tumorigenicity and identified FADS2, a delta‐6 desaturase. FADS2 depletion reduced in vivo tumorigenicity and cell proliferation. In clinical samples, FADS2 was expressed in cancer cells but not in stromal cells. FADS2 inhibition also reduced the migration and sphere‐forming ability of cells and increased apoptotic cell death and ferroptosis markers. Lipidome assay revealed that triglyceride and cholesterol ester levels were decreased in FADS2‐knockdown cells. The oxygen consumption ratio was also decreased in FADS2‐depleted cells. These data indicate that FADS2 depletion causes a reduction in lipid levels, resulting in decrease of energy production and attenuation of cancer cell malignancy.

Funder

Takeda Medical Research Foundation

Kobayashi Foundation for Cancer Research

Japan Agency for Medical Research and Development

Japan Society for the Promotion of Science

Publisher

Wiley

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