Tryptophan Metabolism Acts as a New Anti‐Ferroptotic Pathway to Mediate Tumor Growth

Author:

Liu Dong1,Liang Chun‐hui1,Huang Bin2,Zhuang Xiao1,Cui Weiwei1,Yang Li3,Yang Yinghong1,Zhang Yudan1,Fu Xiaolong4,Zhang Xiaoju3,Du Lutao5,Gu Wei6,Wang Xiangdong1ORCID,Yin Chengqian2,Chai Renjie478,Chu Bo1ORCID

Affiliation:

1. Department of Cell Biology School of Basic Medical Sciences Cheeloo College of Medicine Shandong University Jinan Shandong 250012 China

2. Institute for Cancer Research Shenzhen Bay Laboratory Shenzhen 518107 China

3. Department of Respiratory and Critical Care Medicine Zhengzhou University People's Hospital Henan Provincial People's Hospital Zhengzhou University Zhengzhou Henan 450000 China

4. State Key Laboratory of Bioelectronics Department of Otolaryngology Head and Neck Surgery Zhongda Hospital School of Life Sciences and Technology Advanced Institute for Life and Health Jiangsu Province High‐Tech Key Laboratory for Bio‐Medical Research Southeast University Nanjing 210096 China

5. Department of Clinical Laboratory The Second Hospital of Shandong University Jinan Shandong 250033 China

6. Institute for Cancer Genetics and Department of Pathology and Cell Biology Herbert Irving Comprehensive Cancer Center College of Physicians and Surgeons Columbia University 1130 Nicholas Ave New York NY 10032 USA

7. Co‐Innovation Center of Neuroregeneration Nantong University Nantong 226001 China

8. Department of Otolaryngology Head and Neck Surgery, Sichuan Provincial People's Hospital University of Electronic Science and Technology of China Chengdu 610000 China

Abstract

AbstractEmerging evidence reveals that amino acid metabolism plays an important role in ferroptotic cell death. The conversion of methionine to cysteine is well known to protect tumour cells from ferroptosis upon cysteine starvation through transamination. However, whether amino acids‐produced metabolites participate in ferroptosis independent of the cysteine pathway is largely unknown. Here, the authors show that the tryptophan metabolites serotonin (5‐HT) and 3‐hydroxyanthranilic acid (3‐HA) remarkably facilitate tumour cells to escape from ferroptosis distinct from cysteine‐mediated ferroptosis inhibition. Mechanistically, both 5‐HT and 3‐HA act as potent radical trapping antioxidants (RTA) to eliminate lipid peroxidation, thereby inhibiting ferroptotic cell death. Monoamine oxidase A (MAOA) markedly abrogates the protective effect of 5‐HT via degrading 5‐HT. Deficiency of MAOA renders cancer cells resistant to ferroptosis upon 5‐HT treatment. Kynureninase (KYNU), which is essential for 3‐HA production, confers cells resistant to ferroptotic cell death, whereas 3‐hydroxyanthranilate 3,4‐dioxygenase (HAAO) significantly blocks 3‐HA mediated ferroptosis inhibition by consuming 3‐HA. In addition, the expression level of HAAO is positively correlated with lipid peroxidation and clinical outcome. Together, the findings demonstrate that tryptophan metabolism works as a new anti‐ferroptotic pathway to promote tumour growth, and targeting this pathway will be a promising therapeutic approach for cancer treatment.

Funder

Shandong University

Natural Science Foundation of Shandong Province

National Natural Science Foundation of China

Department of Science and Technology of Sichuan Province

Shenzhen Fundamental Research Program

Publisher

Wiley

Subject

General Physics and Astronomy,General Engineering,Biochemistry, Genetics and Molecular Biology (miscellaneous),General Materials Science,General Chemical Engineering,Medicine (miscellaneous)

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