?Np63 overexpression promotes oral cancer cell migration through hyperactivated Activin A signaling

被引:1
|
作者
Mundhe, Dhanashree [1 ,3 ,7 ]
Mishra, Rupa [1 ,3 ,8 ]
Basu, Srikanta [2 ,3 ,9 ]
Dalal, Sorab [2 ,3 ]
Kumar, Sanjeev [4 ,5 ]
Teni, Tanuja [1 ,2 ,6 ]
机构
[1] Adv Ctr Treatment Res & Educ Canc ACTREC, Tata Mem Ctr, Shilpee Dutt Lab, Kharghar 410210, Navi Mumbai, India
[2] Adv Ctr Treatment Res & Educ Canc ACTREC, Tata Mem Ctr, Cell & Tumor Biol, Plot 1&2,Sect 22, Navi Mumbai 410210, Maharashtra, India
[3] Homi Bhabha Natl Inst, 2nd Floor,Training Sch Complex, Mumbai 400094, Maharashtra, India
[4] BioCOS Life Sci Private Ltd, AECS Layout, B Block,Hosur Rd,SAAMI Bldg,851-A, Bengaluru, Karnataka, India
[5] Dayananda Sagar Univ, Sch Engn, Dept AIML Comp Sci, Bengaluru 560068, Karnataka, India
[6] Adv Ctr Treatment Res & Educ Canc ACTREC, Tata Mem Ctr, Plot 1 & 2,Sect 22, Navi Mumbai 410210, Maharashtra, India
[7] Tel Aviv Univ, Fac Med, Dept Pathol, Tel Aviv, Israel
[8] Indian Inst Sci Educ & Res IISER, Ctr Translat Canc Res, Pune & Prashanti Canc Care Mission PCCM, Pune, India
[9] Natl Canc Inst, Ctr Canc Res, Mouse Canc Genet Program, Frederick, MD USA
关键词
Oral cancer; p63; Activin A; SMAD2/3; Vactosertib inhibitor; Cell migration; UP-REGULATION; P63; EXPRESSION; P53; DELTA-NP63-ALPHA; CARCINOMA; TUMOR; GENE; INVASION; ADHESION;
D O I
10.1016/j.yexcr.2023.113739
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Oral cancer is a common malignant tumor of the oral cavity that affects many countries with a prevalent distribution in the Indian subcontinent, with poor prognosis rate on account of locoregional metastases. Gain-of function mutations in p53 and overexpression of its related transcription factor, p63 are both widely reported events in oral cancers. However, targeting these alterations remains a far-achieved aim due to lack of knowledge on their downstream signaling pathways. In the present study, we characterize the isoforms of p63 and using knockdown strategy, decipher the functions and oncogenic signaling of p63 in oral cancers. Using Microarray and Chromatin Immunoprecipitation experiments, we decipher a novel transcriptional regulatory axis between p63 and Activin A and establish its functional significance in migration of oral cancer cells. Using an orally bioavailable inhibitor of the Activin A pathway to attenuate oral cancer cell migration and invasion, we further demonstrate the targetability of this signaling axis. Our study highlights the oncogenic role of & UDelta;Np63 - Activin A - SMAD2/3 signaling and provides a basis for targeting this oncogenic pathway in oral cancers.
引用
收藏
页数:10
相关论文
共 50 条
  • [31] Concomitant overexpression of Activin A and p63 is associated with poor outcome in oral cancer patients
    Mundhe, Dhanashree
    Waghole, Rohit
    Pawar, Sagar
    Mishra, Rupa
    Shetty, Arusha
    Gera, Poonam
    Kannan, Sadhana
    Teni, Tanuja
    JOURNAL OF ORAL PATHOLOGY & MEDICINE, 2020, 49 (09) : 876 - 885
  • [32] ΔNp63 regulates cell proliferation, differentiation, adhesion, and migration in the BL2 subtype of basal-like breast cancer
    Orzol, Paulina
    Nekulova, Marta
    Holcakova, Jitka
    Muller, Petr
    Votesek, Borivoj
    Coates, Philip J.
    TUMOR BIOLOGY, 2016, 37 (08) : 10133 - 10140
  • [33] ΔNp63α activates CD82 metastasis suppressor to inhibit cancer cell invasion
    Wu, J.
    Liang, S.
    Bergholz, J.
    He, H.
    Walsh, E. M.
    Zhang, Y.
    Xiao, Z-X
    CELL DEATH & DISEASE, 2014, 5 : e1280 - e1280
  • [34] Phospho-ΔNp63α-dependent regulation of autophagic signaling through transcription and micro-RNA modulation
    Huang, Yiping
    Guerrero-Preston, Rafael
    Ratovitski, Edward A.
    CELL CYCLE, 2012, 11 (06) : 1247 - 1259
  • [35] ΔNp63α promotes Bortezomib resistance via the CYGB–ROS axis in head and neck squamous cell carcinoma
    Peng Zhou
    Caiyun Zhang
    Xianmin Song
    Dadong Zhang
    Minhui Zhu
    Hongliang Zheng
    Cell Death & Disease, 13
  • [36] Glycogen synthase kinase-3β regulates ΔNp63 gene transcription through the β-catenin signaling pathway
    Chu, Wing-Keung
    Dai, Pei-Min
    Li, Hsin-Lun
    Chen, Jan-Kan
    JOURNAL OF CELLULAR BIOCHEMISTRY, 2008, 105 (02) : 447 - 453
  • [37] ΔNp63 Versatilely Regulates a Broad NF-κB Gene Program and Promotes Squamous Epithelial Proliferation, Migration, and Inflammation
    Yang, Xinping
    Lu, Hai
    Yan, Bin
    Romano, Rose-Anne
    Bian, Yansong
    Friedman, Jay
    Duggal, Praveen
    Allen, Clint
    Chuang, Ryan
    Ehsanian, Reza
    Si, Han
    Sinha, Satrajit
    Van Waes, Carter
    Chen, Zhong
    CANCER RESEARCH, 2011, 71 (10) : 3688 - 3700
  • [38] ΔNp63α Confers Tumor Cell Resistance to Cisplatin through the AKT1 Transcriptional Regulation
    Sen, Tanusree
    Sen, Nilkantha
    Brait, Mariana
    Begum, Shahnaz
    Chatterjee, Aditi
    Hoque, Mohammad Obaidul
    Ratovitski, Edward
    Sidransky, David
    CANCER RESEARCH, 2011, 71 (03) : 1167 - 1176
  • [39] Increased ΔNp63 expression is predictive of malignant transformation in oral epithelial dysplasia and poor prognosis in oral squamous cell carcinoma
    Matsubara, Ryota
    Kawano, Shintaro
    Kiyosue, Takahiro
    Goto, Yuichi
    Hirano, Mitsuhiro
    Jinno, Teppei
    Toyoshima, Takeshi
    Kitamura, Ryoji
    Oobu, Kazunari
    Nakamura, Seiji
    INTERNATIONAL JOURNAL OF ONCOLOGY, 2011, 39 (06) : 1391 - 1399
  • [40] Metformin Promotes AMP-activated Protein Kinase-independent Suppression of ΔNp63α Protein Expression and Inhibits Cancer Cell Viability
    Yi, Yong
    Chen, Deshi
    Ao, Juan
    Sun, Shengnan
    Wu, Min
    Li, Xiaorong
    Bergholz, Johann
    Zhang, Yujun
    Xiao, Zhi-Xiong
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2017, 292 (13) : 5253 - 5261