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TRIM59-mediated ferroptosis enhances neuroblastoma development and chemosensitivity through p53 ubiquitination and degradation  期刊论文  

  • 编号:
    20AE5EECED49715F90A3A1E62D38B422
  • 作者:
    Liu, Yingbei[1];Jiang, Na[1];Chen, Weicheng(陈伟呈)[1]Zhang, Wenbo[1];Shen, Xiao[1];Jia, Bing(贾兵)[1]Chen, Gang(陈纲)[1]
  • 语种:
    英文
  • 期刊:
    HELIYON ISSN:2405-8440 2024 年 10 卷 4 期 ; FEB 29
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  • 关键词:
  • 摘要:

    Neuroblastoma, predominantly afflicting young individuals, is characterized as an embryonal tumor, with poor prognosis primarily attributed to chemoresistance. This study delved into the impact of tripartite motif (TRIM) 59, an E3 ligase, on neuroblastoma development and chemosensitivity through mediating ferroptosis and the involvement of the tumor suppressor p53. Clinical samples were assessed for TRIM59 and p53 levels to explore their correlation with neuroblastoma differentiation. In neuroblastoma cells, modulation of TRIM59 expression, either through overexpression or knockdown, was coupled with doxorubicin hydrochloride (DOX) or ferrostatin-1 (Fer-1) therapy. In vivo assessments examined the influence of TRIM59 knockdown on neuroblastoma chemosensitivity to DOX. Co-immunoprecipitation and ubiquitination assays investigated the association between TRIM59 and p53. Proliferation was gauged with Cell Counting Kit-8, lipid reactive oxygen species (ROS) were assessed via flow cytometry, and protein levels were determined by Western blotting. TRIM59 expression was inversely correlated with neuroblastoma differentiation and positively linked to cell proliferation in response to DOX. Moreover, TRIM59 impeded lipid ROS generation and ferroptosis by directly interacting with p53, promoting its ubiquitination and degradation in DOX-exposed neuroblastoma cells. Fer-1 countered the impact of TRIM59 knockdown on neuroblastoma, while TRIM59 knockdown enhanced the therapeutic efficacy of DOX in xenograph mice. This study underscores TRIM59 as an oncogene in neuroblastoma, fostering growth and chemoresistance by suppressing ferroptosis through p53 ubiquitination and degradation. TRIM59 emerges as a potential strategy for neuroblastoma therapy.

  • 推荐引用方式
    GB/T 7714:
    Liu Yingbei,Jiang Na,Chen Weicheng, et al. TRIM59-mediated ferroptosis enhances neuroblastoma development and chemosensitivity through p53 ubiquitination and degradation [J].HELIYON,2024,10(4).
  • APA:
    Liu Yingbei,Jiang Na,Chen Weicheng,Zhang Wenbo,&Chen Gang.(2024).TRIM59-mediated ferroptosis enhances neuroblastoma development and chemosensitivity through p53 ubiquitination and degradation .HELIYON,10(4).
  • MLA:
    Liu Yingbei, et al. "TRIM59-mediated ferroptosis enhances neuroblastoma development and chemosensitivity through p53 ubiquitination and degradation" .HELIYON 10,4(2024).
  • 入库时间:
    2025/2/19 12:26:45
  • 更新时间:
    2025/2/21 12:42:40
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