Cross-talk between PARN and EGFR-STAT3 Signaling Facilitates Self-Renewal and Proliferation of Glioblastoma Stem Cells

被引:9
|
作者
Yin, Jinlong [1 ,2 ]
Seo, Yoona [1 ,3 ]
Rhim, Jiho [1 ,3 ]
Jin, Xiong [2 ]
Kim, Tae Hoon [1 ]
Kim, Sung Soo [1 ]
Hong, Jun-Hee [1 ]
Gwak, Ho-Shin [4 ,5 ]
Yoo, Heon [1 ,4 ]
Park, Jong Bae [1 ]
Kim, Jong Heon [1 ,3 ]
机构
[1] Natl Canc Ctr, Grad Sch Canc Sci & Policy, Dept Canc Biomed Sci, Goyang, South Korea
[2] Henan Univ, Henan Macquarie Univ Joint Ctr Biomed Innovat, Sch Life Sci, Kaifeng, Henan, Peoples R China
[3] Natl Canc Ctr, Res Inst, Canc Mol Biol Branch, Goyang 10408, South Korea
[4] Natl Canc Ctr, Neurooncol Clin, Goyang, South Korea
[5] Natl Canc Ctr, Grad Sch Canc Sci & Policy, Dept Canc Control, Goyang, South Korea
基金
新加坡国家研究基金会;
关键词
GROWTH-FACTOR RECEPTOR; POLY(A)-SPECIFIC RIBONUCLEASE PARN; CENTRAL-NERVOUS-SYSTEM; GLIOMA GROWTH; RNA; BINDING; STAT3; MATURATION; CLASSIFICATION; IDENTIFICATION;
D O I
10.1158/0008-5472.CAN-22-3965
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
A positive feedback loop comprising PARN and EGFR-STAT3 signaling supports self-renewal and proliferation of glioblastoma stem cells to drive tumor progression and can be targeted in glioblastoma therapeutics. Glioblastoma is the most common type of malignant primary brain tumor and displays highly aggressive and heterogeneous phenotypes. The transcription factor STAT3 has been reported to play a key role in glioblastoma malignancy. Thus, discovering targets and functional downstream networks regulated by STAT3 that govern glioblastoma pathogenesis may lead to improved treatment strategies. In this study, we identified that poly(A)-specific ribonuclease (PARN), a key modulator of RNA metabolism, activates EGFR-STAT3 signaling to support glioblastoma stem cells (GSC). Functional integrative analysis of STAT3 found PARN as the top-scoring transcriptional target involved in RNA processing in patients with glioblastoma, and PARN expression was strongly correlated with poor patient survival and elevated malignancy. PARN positively regulated self-renewal and proliferation of GSCs through its 3 '-5 ' exoribonuclease activity. EGFR was identified as a clinically relevant target of PARN in GSCs. PARN positively modulated EGFR by negatively regulating the EGFR-targeting miRNA miR-7, and increased EGFR expression created a positive feedback loop to increase STAT3 activation. PARN depletion in GSCs reduced infiltration and prolonged survival in orthotopic brain tumor xenografts; similar results were observed using siRNA nanocapsule-mediated PARN targeting. Pharmacological targeting of STAT3 also confirmed PARN regulation by STAT3 signaling. In sum, these results suggest that a STAT3-PARN regulatory network plays a pivotal role in tumor progression and thus may represent a target for glioblastoma therapeutics.Significance: A positive feedback loop comprising PARN and EGFR-STAT3 signaling supports self-renewal and proliferation of glioblastoma stem cells to drive tumor progression and can be targeted in glioblastoma therapeutics.
引用
收藏
页码:3693 / 3709
页数:17
相关论文
共 50 条
  • [21] Defining the role of Wnt/β-catenin signaling in the survival, proliferation, and self-renewal of human embryonic stem cells
    Dravid, G
    Ye, ZH
    Hammond, H
    Chen, GB
    Pyle, A
    Donovan, P
    Yu, XB
    Cheng, LZ
    STEM CELLS, 2005, 23 (10) : 1489 - 1501
  • [22] Cross-talk between sphingosine-1-phosphate and EGFR signaling pathways enhances human glioblastoma cell invasiveness
    Cattaneo, Maria Grazia
    Vanetti, Claudia
    Samarani, Maura
    Aureli, Massimo
    Bassi, Rosaria
    Sonnino, Sandro
    Giussani, Paola
    FEBS LETTERS, 2018, 592 (06): : 949 - 961
  • [23] FoxM1 Drives a Feed-Forward STAT3-Activation Signaling Loop That Promotes the Self-Renewal and Tumorigenicity of Glioblastoma Stem-like Cells
    Gong, Ai-hua
    Wei, Ping
    Zhang, Sicong
    Yao, Jun
    Yuan, Ying
    Zhou, Ai-dong
    Lang, Frederick F.
    Heimberger, Amy B.
    Rao, Ganesh
    Huang, Suyun
    CANCER RESEARCH, 2015, 75 (11) : 2337 - 2348
  • [24] Cross-Talk between NOK and EGFR: Juxtamembrane and Kinase domain interactions enhancing STAT3/5 signaling in breast cancer tumorigenesis
    Wang, Yinyin
    Zhang, Bingdong
    He, Chunhua
    Tian, Bo
    Liu, Sihan
    Li, Jianghua
    Wang, Jiayu
    Yang, Shigao
    Zhu, Bingtao
    Wang, Xiaoguang
    Chang, Zhijie
    Cao, Chenxi
    TRANSLATIONAL ONCOLOGY, 2025, 52
  • [25] VE-Cadherin regulates the self-renewal of mouse embryonic stem cells via LIF/Stat3 signaling pathway
    He, Ningning
    Chen, Xiaoniao
    Wang, Dan
    Xu, Ke
    Wu, Lingling
    Liu, Yuanyuan
    Tao, Hongyan
    Zhao, Qinjun
    Cao, Xiaocang
    Li, Yuhao
    Liu, Na
    Qi, Xin
    Han, Zhongchao
    Kong, Deling
    Yang, Jun
    Li, Zongjin
    BIOMATERIALS, 2018, 158 : 34 - 43
  • [26] Cross-talk between retinoic acid and Stat3 signaling pathways in acute promyelocytic leukemia
    Dong, S
    Chen, SJ
    Tweardy, DJ
    LEUKEMIA & LYMPHOMA, 2003, 44 (12) : 2023 - 2029
  • [27] Functional cross-talk between the cyclic AMP and Jak/STAT signaling pathways in vascular smooth muscle cells
    Sylvain Meloche
    Stéphane Pelletier
    Marc J. Servant
    Molecular and Cellular Biochemistry, 2000, 212 : 99 - 109
  • [28] Functional cross-talk between the cyclic AMP and Jak/STAT signaling pathways in vascular smooth muscle cells
    Meloche, S
    Pelletier, S
    Servant, MJ
    MOLECULAR AND CELLULAR BIOCHEMISTRY, 2000, 212 (1-2) : 99 - 109
  • [29] LIF/STAT3 signaling fails to maintain self-renewal of human embryonic stem cells (vol 22, pg 770, 2004)
    Daheron, Laurence
    Opitz, Sarah L.
    Zaehres, Holm
    Lensch, William M.
    Andrews, Peter W.
    Itskovitz-Eldor, Joseph
    Daley, George Q.
    STEM CELLS, 2007, 25 (12) : 3273 - 3273
  • [30] Pramel7 Mediates LIF/STAT3-Dependent Self-Renewal in Embryonic Stem Cells
    Casanova, Elisa A.
    Shakhova, Olga
    Patel, Sameera S.
    Asner, Igor N.
    Pelczar, Pawel
    Weber, Fabienne A.
    Graf, Urs
    Sommer, Lukas
    Buerki, Kurt
    Cinelli, Paolo
    STEM CELLS, 2011, 29 (03) : 474 - 485