Retinol Saturase Mediates Retinoid Metabolism to Impair a Ferroptosis Defense System in Cancer Cells

被引:21
作者
Bi, Guoshu [1 ]
Liang, Jiaqi [1 ]
Shan, Guangyao [1 ]
Bian, Yunyi [1 ]
Chen, Zhencong [1 ]
Huang, Yiwei [1 ]
Lu, Tao [1 ]
Li, Ming [1 ]
Besskaya, Valeria [1 ]
Zhao, Mengnan [1 ]
Fan, Hong [1 ]
Wang, Qun [1 ]
Gan, Boyi [2 ]
Zhan, Cheng [1 ,3 ]
机构
[1] Fudan Univ, Zhongshan Hosp, Dept Thorac Surg, Shanghai, Peoples R China
[2] Univ Texas MD Anderson Canc Ctr, Dept Expt Radiat Oncol, Houston, TX 77030 USA
[3] Fudan Univ, Zhongshan Hosp, Shanghai 200032, Peoples R China
基金
上海市自然科学基金;
关键词
STEAROYL-COA DESATURASE-1; SERUM BETA-CAROTENE; VITAMIN-A; DEATH; RISK; PEROXIDATION; IDENTIFICATION; MECHANISMS; ALPHA; IRON;
D O I
10.1158/0008-5472.CAN-22-3977
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
◥ Ferroptosis is an iron-dependent form of regulated cell death induced by the lethal overload of lipid peroxides in cellular membranes. In recent years, modulating ferroptosis has gained attention as a potential therapeutic approach for tumor suppression. In the current study, retinol saturase (RETSAT) was identified as a significant ferroptosis mediator using a publicly accessible CRISPR/ Cas9 screening dataset. RETSAT depletion protected tumor cells from lipid peroxidation and subsequent cell death triggered by various ferroptosis inducers. Furthermore, exogenous supplementation with retinoids, including retinol (the substrate of RETSAT) and its derivatives retinal and retinoic acid, also suppressed ferroptosis, whereas the product of RETSAT, 13, 14-dihydroretinol, failed to do so. As effective radical-trapping antioxidant, retinoids protected the lipid membrane from autoxidation and subsequent fragmentation, thus terminating the cascade of ferroptosis. Pseudotargeted lipidomic analysis identified an association between retinoid regulation of ferroptosis and lipid metabolism. Retinoic acid, but not 13, 14-dihydroretinoic acid, interacted with its nuclear receptor and activated transcription of stearoyl-CoA desaturase, which introduces the first double bond into saturated fatty acid and thus catalyzes the generation of monounsaturated fatty acid, a known ferroptosis suppressor. Therefore, RETSAT promotes ferroptosis by transforming retinol to 13, 14-dihydroretinol, thereby turning a strong anti-ferroptosis regulator into a relatively weak one. Significance: Retinoids have ferroptosis-protective properties and can be metabolized by RETSAT to promote ferroptosis, suggesting the possibility of targeting retinoid metabolism in cancer as a treatment strategy to trigger ferroptosis.
引用
收藏
页码:2387 / 2404
页数:18
相关论文
共 70 条
  • [1] Blood concentrations of carotenoids and retinol andlungcancer risk: an update of the WCRF-AICR systematic review of published prospective studies
    Abar, Leila
    Vieira, Ana Rita
    Aune, Dagfinn
    Stevens, Christophe
    Vingeliene, Snieguole
    Rosenblatt, Deborah A. Navarro
    Chan, Doris
    Greenwood, Darren C.
    Norat, Teresa
    [J]. CANCER MEDICINE, 2016, 5 (08): : 2069 - 2083
  • [2] Ferroptosis at the crossroads of cancer-acquired drug resistance and immune evasion
    Angeli, Jose Pedro Friedmann
    Krysko, Dmitri, V
    Conrad, Marcus
    [J]. NATURE REVIEWS CANCER, 2019, 19 (07) : 405 - 414
  • [3] The CoQ oxidoreductase FSP1 acts parallel to GPX4 to inhibit ferroptosis
    Bersuker, Kirill
    Hendricks, Joseph M.
    Li, Zhipeng
    Magtanong, Leslie
    Ford, Breanna
    Tang, Peter H.
    Roberts, Melissa A.
    Tong, Bingqi
    Maimone, Thomas J.
    Zoncu, Roberto
    Bassik, Michael C.
    Nomura, Daniel K.
    Dixon, Scott J.
    Olzmann, James A.
    [J]. NATURE, 2019, 575 (7784) : 688 - +
  • [4] miR-6077 promotes cisplatin/pemetrexed resistance in lung adenocarcinoma via CDKN1A/cell cycle arrest and KEAP1/ferroptosis pathways
    Bi, Guoshu
    Liang, Jiaqi
    Zhao, Mengnan
    Zhang, Huan
    Jin, Xing
    Lu, Tao
    Zheng, Yuansheng
    Bian, Yunyi
    Chen, Zhencong
    Huang, Yiwei
    Besskaya, Valeria
    Zhan, Cheng
    Wang, Qun
    Tan, Lijie
    [J]. MOLECULAR THERAPY NUCLEIC ACIDS, 2022, 28 : 366 - 386
  • [5] Pan-cancer characterization of metabolism-related biomarkers identifies potential therapeutic targets
    Bi, Guoshu
    Bian, Yunyi
    Liang, Jiaqi
    Yin, Jiacheng
    Li, Runmei
    Zhao, Mengnan
    Huang, Yiwei
    Lu, Tao
    Zhan, Cheng
    Fan, Hong
    Wang, Qun
    [J]. JOURNAL OF TRANSLATIONAL MEDICINE, 2021, 19 (01)
  • [6] Identification and validation of tumor environment phenotypes in lung adenocarcinoma by integrative genome-scale analysis
    Bi, Guoshu
    Chen, Zhencong
    Yang, Xiaodong
    Liang, Jiaqi
    Hu, Zhengyang
    Bian, Yunyi
    Sui, Qihai
    Li, Runmei
    Zhan, Cheng
    Fan, Hong
    [J]. CANCER IMMUNOLOGY IMMUNOTHERAPY, 2020, 69 (07) : 1293 - 1305
  • [7] PROOXIDANT STATES AND TUMOR PROMOTION
    CERUTTI, PA
    [J]. SCIENCE, 1985, 227 (4685) : 375 - 381
  • [8] Ferroptosis drives photoreceptor degeneration in mice with defects in all-trans-retinal clearance
    Chen, Chao
    Chen, Jingmeng
    Wang, Yan
    Liu, Zuguo
    Wu, Yalin
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2021, 296
  • [9] Landscape and dynamics of single tumor and immune cells in early and advanced-stage lung adenocarcinoma
    Chen, Zhencong
    Huang, Yiwei
    Hu, Zhengyang
    Zhao, Mengnan
    Li, Ming
    Bi, Guoshu
    Zheng, Yuansheng
    Liang, Jiaqi
    Lu, Tao
    Jiang, Wei
    Xu, Songtao
    Zhan, Cheng
    Xi, Junjie
    Wang, Qun
    Tan, Lijie
    [J]. CLINICAL AND TRANSLATIONAL MEDICINE, 2021, 11 (03):
  • [10] Vitamin A Metabolism: An Update
    D'Ambrosio, Diana N.
    Clugston, Robin D.
    Blaner, William S.
    [J]. NUTRIENTS, 2011, 3 (01) : 63 - 103