ΔNp63α promotes Bortezomib resistance via the CYGB–ROS axis in head and neck squamous cell carcinoma

被引:0
|
作者
Peng Zhou
Caiyun Zhang
Xianmin Song
Dadong Zhang
Minhui Zhu
Hongliang Zheng
机构
[1] Changhai Hospital,Department of Otorhinolaryngology
[2] Second Military Medical University,Head and Neck Surgery
[3] Affiliated Hospital of Xuzhou Medical University,Department of Otorhinolaryngology
[4] 3D Medicines Inc.,Head and Neck Surgery
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Bortezomib, a proteasome inhibitor, proved potent in the treatment of recurrent multiple myeloma or mantle cell lymphoma. However, slow progress was made when it was applied to treat solid tumors. We discovered that different head and neck squamous cell carcinoma (HNSCC) cell lines had significantly different sensitivities to bortezomib, and also demonstrated that individual relatively sensitive HNSCC cell lines had fewer ΔNp63α expressions. Based on these findings, we speculated that ΔNp63α may be a key factor in the resistance of HNSCC cells to bortezomib. ΔNp63α knockdown made HNSCC more sensitive to bortezomib, while ΔNp63α overexpression made it more resistant. RNA sequencing (RNA-seq) analysis of ΔNp63α-knockdown cells revealed clear alterations in the subset of genes that were associated with oxidative stress and antioxidant defense. The gene CYGB was downregulated significantly. CHIP-seq detection showed that CYGB was the transcriptional regulatory site of ΔNp63α. CHIP-PCR showed evidence of ΔNp63α binding. The detection of the dual-luciferase reporter gene demonstrated that ΔNp63α significantly enhanced the CYGB promoter activity. Furthermore, we confirmed that CYGB plays a role in clearing excess ROS induced by bortezomib to inhibit HNSCC apoptosis. Consequently, ΔNp63α regulated the expression of CYGB in HNSCC. CYGB was the target of transcription regulation of ΔNp63α. It reduced apoptosis by clearing excess ROS produced by bortezomib, and thus exerted drug resistance.
引用
收藏
相关论文
共 50 条
  • [31] Possible involvement of ΔNp63 downregulation in the invasion and metastasis of oral squamous cell carcinoma via induction of a mesenchymal phenotype
    Goto, Yuichi
    Kawano, Shintaro
    Matsubara, Ryota
    Kiyosue, Takahiro
    Hirano, Mitsuhiro
    Jinno, Teppei
    Maruse, Yasuyuki
    Toyoshima, Takeshi
    Kitamura, Ryoji
    Tanaka, Hideaki
    Oobu, Kazunari
    Nakamura, Seiji
    CLINICAL & EXPERIMENTAL METASTASIS, 2014, 31 (03) : 293 - 306
  • [32] DNA Demethylation Switches Oncogenic ΔNp63 to Tumor Suppressive TAp63 in Squamous Cell Carcinoma
    Pokorna, Zuzana
    Hrabal, Vaclav
    Tichy, Vlastimil
    Vojtesek, Borivoj
    Coates, Philip J.
    FRONTIERS IN ONCOLOGY, 2022, 12
  • [33] p40 (ΔNp63) Is Superior to p63 for the Diagnosis of Pulmonary Squamous Cell Carcinoma
    Bishop, J. A.
    Teruya-Feldstein, J.
    Westra, W. H.
    Pelosi, G.
    Travis, W. D.
    Rekhtman, N.
    LABORATORY INVESTIGATION, 2012, 92 : 472A - 473A
  • [34] Analysis of p40 (ΔNp63) Immunoreactivity in Pulmonary Squamous Cell Carcinoma and Adenocarcinoma
    Setoodeh, Reza
    Setoodeh, Sasan
    Tahmasbi, Maryam
    Hakam, Ardeshir
    AMERICAN JOURNAL OF CLINICAL PATHOLOGY, 2013, 140 : 173 - 173
  • [35] Correction: E47 upregulates ΔNp63α to promote growth of squamous cell carcinoma
    Jing Xu
    Fengtian Li
    Ya Gao
    Rongtian Guo
    Liangping Ding
    Mengyuan Fu
    Yong Yi
    Hu Chen
    Zhi-Xiong Jim Xiao
    Mengmeng Niu
    Cell Death & Disease, 13
  • [36] ΔNp63α promotes radioresistance in esophageal squamous cell carcinoma through the PLEC-KEAP1-NRF2 feedback loop
    Tao, Jin
    Mao, Mian
    Lu, Yuhai
    Deng, Liyuan
    Yu, Shuhan
    Zeng, Xiaofei
    Jia, Weikun
    Wu, Zhiqiang
    Li, Chenghua
    Ma, Ruidong
    Chen, Hu
    CELL DEATH & DISEASE, 2024, 15 (11):
  • [37] ITGAV Promotes the Progression of Head and Neck Squamous Cell Carcinoma
    Xu, Lingyi
    Barrett, Jeremy G.
    Peng, Jiayi
    Li, Suk
    Messadi, Diana
    Hu, Shen
    CURRENT ONCOLOGY, 2024, 31 (03) : 1311 - 1322
  • [38] A dysbiotic microbiome promotes head and neck squamous cell carcinoma
    Daniel N. Frank
    Yue Qiu
    Yu Cao
    Shuguang Zhang
    Ling Lu
    Jennifer M. Kofonow
    Charles E. Robertson
    Yanqiu Liu
    Haibo Wang
    Cassandra L. Levens
    Kristine A. Kuhn
    John Song
    Vijay R. Ramakrishnan
    Shi-Long Lu
    Oncogene, 2022, 41 : 1269 - 1280
  • [39] EZH2 regulates a SETDB1/ΔNp63α axis via RUNX3 to drive a cancer stem cell phenotype in squamous cell carcinoma
    Seamus Balinth
    Matthew L. Fisher
    Yon Hwangbo
    Caizhi Wu
    Carlos Ballon
    Xueqin Sun
    Alea A. Mills
    Oncogene, 2022, 41 : 4130 - 4144
  • [40] A dysbiotic microbiome promotes head and neck squamous cell carcinoma
    Frank, Daniel N.
    Qiu, Yue
    Cao, Yu
    Zhang, Shuguang
    Lu, Ling
    Kofonow, Jennifer M.
    Robertson, Charles E.
    Liu, Yanqiu
    Wang, Haibo
    Levens, Cassandra L.
    Kuhn, Kristine A.
    Song, John
    Ramakrishnan, Vijay R.
    Lu, Shi-Long
    ONCOGENE, 2022, 41 (09) : 1269 - 1280