Palmitic acid‐induced ferroptosis via CD36 activates ER stress to break calcium‐iron balance in colon cancer cells

Author:

Kuang Hao12345,Sun Xuehua123,Liu Ying6,Tang Meng1237,Wei Yan123,Shi Yingying123,Li Ruibin123,Xiao Guohui123,Kang Jinlin123,Wang Fen123,Peng Jin123,Xu Hui123ORCID,Zhou Fuxiang123ORCID

Affiliation:

1. Department of Radiation and Medical Oncology, Zhongnan Hospital Wuhan University China

2. Hubei Key Laboratory of Tumor Biological Behaviors, Zhongnan Hospital Wuhan University China

3. Hubei Clinical Cancer Study Center, Zhongnan Hospital Wuhan University China

4. School of Medicine University of Electronic Science & Technology of China Chengdu China

5. Sichuan Cancer Hospital Institute/Sichuan Cancer Center/School of Medicine University of Electronic Science & Technology of China Chengdu China

6. Hospital of Chengdu University of Traditional Chinese Medicine China

7. Comprehensive Oncology Department, National Cancer Center/National Clinical Research Center for Cancer/Cancer Hospital Chinese Academy of Medical Sciences and Peking Union Medical College Beijing China

Abstract

Ferroptosis, featuring an iron‐dependent peroxidation of lipids, is a novel form of programmed cell death that may hold great potential in cancer therapy. Our study found that palmitic acid (PA) inhibited colon cancer cell viability in vitro and in vivo, in conjunction with an accumulation of reactive oxygen species and lipid peroxidation. The ferroptosis inhibitor Ferrostatin‐1 but not Z‐VAD‐FMK (a pan‐caspase inhibitor), Necrostatin‐1 (a potent necroptosis inhibitor), or CQ (a potent inhibitor of autophagy), rescued the cell death phenotype induced by PA. Subsequently, we verified that PA induces ferroptotic cell death through excess iron as cell death was inhibited by iron chelator deferiprone (DFP), while it was exacerbated by a supplement of ferric ammonium citrate. Mechanistically, PA affects intracellular iron content by inducing endoplasmic reticulum (ER) stress leading to ER calcium release and regulating transferrin (TF) transport through increasing cytosolic calcium levels. Furthermore, we observed that cells with high expression of CD36 were more vulnerable to PA‐induced ferroptosis. Altogether, our findings reveal that PA engages in anti‐cancer properties by activating ER stress/ER calcium release/TF‐dependent ferroptosis, and PA might serve as a compound to activate ferroptosis in colon cancer cells with high CD36 expression.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Cell Biology,Molecular Biology,Biochemistry

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