Pharmacological and genetic targeting of 5-lipoxygenase interrupts c-Myc oncogenic signaling and kills enzalutamide-resistant prostate cancer cells via apoptosis

被引:0
|
作者
Jitender Monga
Dhatchayini Subramani
Ajay Bharathan
Jagadananda Ghosh
机构
[1] Henry Ford Health System,Vattikuti Urology Institute
[2] Henry Ford Cancer Institute,undefined
[3] Henry Ford Health System,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Much of the morbidity and mortality due to prostate cancer happen because of castration-resistant prostate cancer (CRPC) which invariably develops after anti-androgenic therapy. FDA-approved enzalutamide is commonly prescribed for CRPC which works by blocking androgen receptor function. However, even after initial good response, enzalutamide-resistant prostate cancer (ERPC) develops which eventually leads to widespread metastasis. Management of ERPC is extremely difficult because available therapeutic regimen cannot effectively kill and eliminate ERPC cells. Though the mechanism behind enzalutamide-resistance is not properly understood, over-activation of c-Myc has been found to be a common event which plays an important role in the maintenance and progression of ERPC phenotype. However, direct-targeting of c-Myc poses special problem because of its non-enzymatic nature and certain amount of c-Myc activity is needed by non-cancer cells as well. Thus, c-Myc has emerged as an elusive target which needs to be managed by novel agents and strategies in a cancer-specific way. We investigated the effects of pharmacological and genetic inhibition of 5-lipoxygenase (5-Lox) on cell proliferation, apoptosis and invasive potential of enzalutamide-resistant prostate cancer cells. Transcriptional activity of c-Myc was analyzed by DNA-binding, luciferase-assays, and expression of c-Myc-target genes. We found that 5-Lox regulates c-Myc signaling in enzalutamide-resistant prostate cancer cells and inhibition of 5-Lox by Quiflapon/MK591 or shRNA interrupts oncogenic c-Myc signaling and kills ERPC cells by triggering caspase-mediated apoptosis. Interestingly, MK591 does not affect normal, non-cancer cells in the same experimental conditions. Our findings indicate that inhibition of 5-Lox may emerge as a promising new approach to effectively kill ERPC cells sparing normal cells and suggest that development of a long-term curative therapy of prostate cancer may be possible by killing and eliminating ERPC cells with suitable 5-Lox-inhibitors.
引用
收藏
相关论文
共 27 条
  • [21] Maclurin exerts anti-cancer effects on PC3 human prostate cancer cells via activation of p38 and inhibitions of JNK, FAK, AKT, and c-Myc signaling pathways
    Lee, Yu Jin
    Jung, Okkeun
    Lee, Jongsung
    Son, Juhyeon
    Cho, Jae Youl
    Ryou, Chongsuk
    Lee, Sang Yeol
    NUTRITION RESEARCH, 2018, 58 : 62 - 71
  • [22] Lycopodine triggers apoptosis by modulating 5-lipoxygenase, and depolarizing mitochondrial membrane potential in androgen sensitive and refractory prostate cancer cells without modulating p53 activity: Signaling cascade and drug-DNA interaction
    Bishayee, Kausik
    Chakraborty, Debrup
    Ghosh, Samrat
    Boujedaini, Naoual
    Khuda-Bukhsh, Anisur Rahman
    EUROPEAN JOURNAL OF PHARMACOLOGY, 2013, 698 (1-3) : 110 - 121
  • [23] MicroRNA-188-5p promotes apoptosis and inhibits cell proliferation of breast cancer cells via the MAPK signaling pathway by targeting Rap2c
    Zhu, Xinying
    Qiu, Jinxia
    Zhang, Tao
    Yang, Yaping
    Guo, Shuai
    Li, Tianshun
    Jiang, Kangfeng
    Zahoor, Arshad
    Deng, Ganzhen
    Qiu, Changwei
    JOURNAL OF CELLULAR PHYSIOLOGY, 2020, 235 (03) : 2389 - 2402
  • [24] Carbon ion irradiation-induced DNA damage evokes cell cycle arrest and apoptosis via the pRb/E2F1/c-Myc signaling pathway in p53-deficient prostate cancer PC-3 cells
    Fang Wang
    Yi Xiao
    Jun-Fang Yan
    Guo-Min Huang
    Jin-Hua Zhang
    Cui-Xia Di
    Jing Si
    Hong Zhang
    Ai-Hong Mao
    NuclearScienceandTechniques, 2021, 32 (03) : 84 - 95
  • [25] Carbon ion irradiation-induced DNA damage evokes cell cycle arrest and apoptosis via the pRb/E2F1/c-Myc signaling pathway in p53-deficient prostate cancer PC-3 cells
    Wang, Fang
    Xiao, Yi
    Yan, Jun-Fang
    Huang, Guo-Min
    Zhang, Jin-Hua
    Di, Cui-Xia
    Si, Jing
    Zhang, Hong
    Mao, Ai-Hong
    NUCLEAR SCIENCE AND TECHNIQUES, 2021, 32 (03)
  • [26] Carbon ion irradiation-induced DNA damage evokes cell cycle arrest and apoptosis via the pRb/E2F1/c-Myc signaling pathway in p53-deficient prostate cancer PC-3 cells
    Fang Wang
    Yi Xiao
    Jun-Fang Yan
    Guo-Min Huang
    Jin-Hua Zhang
    Cui-Xia Di
    Jing Si
    Hong Zhang
    Ai-Hong Mao
    Nuclear Science and Techniques, 2021, 32
  • [27] Anti-Warburg Mechanism of Ginsenoside F2 in Human Cervical Cancer Cells via Activation of miR193a-5p and Inhibition of β-Catenin/c-Myc/Hexokinase 2 Signaling Axis
    Shin, Nari
    Lee, Hyo-Jung
    Sim, Deok Yong
    Ahn, Chi-Hoon
    Park, Su-Yeon
    Koh, Wonil
    Khil, Jaeho
    Shim, Bum-Sang
    Kim, Bonglee
    Kim, Sung-Hoon
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2024, 25 (17)