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FGF19/SOCE/NFATc2 signaling circuit facilitates the self-renewal of liver cancer stem cells

Background & Aims: Liver cancer stem cells (LCSCs) mediate therapeutic resistance and correlate with poor outcomes in patients with hepatocellular carcinoma (HCC). Fibroblast growth factor (FGF)-19 is a crucial oncogenic driver gene in HCC and correlates with poor prognosis. However, whether FGF...

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Autores principales: Wang, Jingchun, Zhao, Huakan, Zheng, Lu, Zhou, Yu, Wu, Lei, Xu, Yanquan, Zhang, Xiao, Yan, Guifang, Sheng, Halei, Xin, Rong, Jiang, Lu, Lei, Juan, Zhang, Jiangang, Chen, Yu, Peng, Jin, Chen, Qian, Yang, Shuai, Yu, Kun, Li, Dingshan, Xie, Qichao, Li, Yongsheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7978301/
https://www.ncbi.nlm.nih.gov/pubmed/33754043
http://dx.doi.org/10.7150/thno.56369
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author Wang, Jingchun
Zhao, Huakan
Zheng, Lu
Zhou, Yu
Wu, Lei
Xu, Yanquan
Zhang, Xiao
Yan, Guifang
Sheng, Halei
Xin, Rong
Jiang, Lu
Lei, Juan
Zhang, Jiangang
Chen, Yu
Peng, Jin
Chen, Qian
Yang, Shuai
Yu, Kun
Li, Dingshan
Xie, Qichao
Li, Yongsheng
author_facet Wang, Jingchun
Zhao, Huakan
Zheng, Lu
Zhou, Yu
Wu, Lei
Xu, Yanquan
Zhang, Xiao
Yan, Guifang
Sheng, Halei
Xin, Rong
Jiang, Lu
Lei, Juan
Zhang, Jiangang
Chen, Yu
Peng, Jin
Chen, Qian
Yang, Shuai
Yu, Kun
Li, Dingshan
Xie, Qichao
Li, Yongsheng
author_sort Wang, Jingchun
collection PubMed
description Background & Aims: Liver cancer stem cells (LCSCs) mediate therapeutic resistance and correlate with poor outcomes in patients with hepatocellular carcinoma (HCC). Fibroblast growth factor (FGF)-19 is a crucial oncogenic driver gene in HCC and correlates with poor prognosis. However, whether FGF19 signaling regulates the self-renewal of LCSCs is unknown. Methods: LCSCs were enriched by serum-free suspension. Self-renewal of LCSCs were characterized by sphere formation assay, clonogenicity assay, sorafenib resistance assay and tumorigenic potential assays. Ca(2+) image was employed to determine the intracellular concentration of Ca(2+). Gain- and loss-of function studies were applied to explore the role of FGF19 signaling in the self-renewal of LCSCs. Results: FGF19 was up-regulated in LCSCs, and positively correlated with certain self-renewal related genes in HCC. Silencing FGF19 suppressed self-renewal of LCSCs, whereas overexpressing FGF19 facilitated CSCs-like properties via activation of FGF receptor (FGFR)-4 in none-LCSCs. Mechanistically, FGF19/FGFR4 signaling stimulated store-operated Ca(2+) entry (SOCE) through both the PLCγ and ERK1/2 pathways. Subsequently, SOCE-calcineurin signaling promoted the activation and translocation of nuclear factors of activated T cells (NFAT)-c2, which transcriptionally activated the expression of stemness-related genes (e.g., NANOG, OCT4 and SOX2), as well as FGF19. Furthermore, blockade of FGF19/FGFR4-NFATc2 signaling observably suppressed the self-renewal of LCSCs. Conclusions: FGF19/FGFR4 axis promotes the self-renewal of LCSCs via activating SOCE/NFATc2 pathway; in turn, NFATc2 transcriptionally activates FGF19 expression. Targeting this signaling circuit represents a potential strategy for improving the therapeutic efficacy of HCC.
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spelling pubmed-79783012021-03-21 FGF19/SOCE/NFATc2 signaling circuit facilitates the self-renewal of liver cancer stem cells Wang, Jingchun Zhao, Huakan Zheng, Lu Zhou, Yu Wu, Lei Xu, Yanquan Zhang, Xiao Yan, Guifang Sheng, Halei Xin, Rong Jiang, Lu Lei, Juan Zhang, Jiangang Chen, Yu Peng, Jin Chen, Qian Yang, Shuai Yu, Kun Li, Dingshan Xie, Qichao Li, Yongsheng Theranostics Research Paper Background & Aims: Liver cancer stem cells (LCSCs) mediate therapeutic resistance and correlate with poor outcomes in patients with hepatocellular carcinoma (HCC). Fibroblast growth factor (FGF)-19 is a crucial oncogenic driver gene in HCC and correlates with poor prognosis. However, whether FGF19 signaling regulates the self-renewal of LCSCs is unknown. Methods: LCSCs were enriched by serum-free suspension. Self-renewal of LCSCs were characterized by sphere formation assay, clonogenicity assay, sorafenib resistance assay and tumorigenic potential assays. Ca(2+) image was employed to determine the intracellular concentration of Ca(2+). Gain- and loss-of function studies were applied to explore the role of FGF19 signaling in the self-renewal of LCSCs. Results: FGF19 was up-regulated in LCSCs, and positively correlated with certain self-renewal related genes in HCC. Silencing FGF19 suppressed self-renewal of LCSCs, whereas overexpressing FGF19 facilitated CSCs-like properties via activation of FGF receptor (FGFR)-4 in none-LCSCs. Mechanistically, FGF19/FGFR4 signaling stimulated store-operated Ca(2+) entry (SOCE) through both the PLCγ and ERK1/2 pathways. Subsequently, SOCE-calcineurin signaling promoted the activation and translocation of nuclear factors of activated T cells (NFAT)-c2, which transcriptionally activated the expression of stemness-related genes (e.g., NANOG, OCT4 and SOX2), as well as FGF19. Furthermore, blockade of FGF19/FGFR4-NFATc2 signaling observably suppressed the self-renewal of LCSCs. Conclusions: FGF19/FGFR4 axis promotes the self-renewal of LCSCs via activating SOCE/NFATc2 pathway; in turn, NFATc2 transcriptionally activates FGF19 expression. Targeting this signaling circuit represents a potential strategy for improving the therapeutic efficacy of HCC. Ivyspring International Publisher 2021-03-05 /pmc/articles/PMC7978301/ /pubmed/33754043 http://dx.doi.org/10.7150/thno.56369 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Wang, Jingchun
Zhao, Huakan
Zheng, Lu
Zhou, Yu
Wu, Lei
Xu, Yanquan
Zhang, Xiao
Yan, Guifang
Sheng, Halei
Xin, Rong
Jiang, Lu
Lei, Juan
Zhang, Jiangang
Chen, Yu
Peng, Jin
Chen, Qian
Yang, Shuai
Yu, Kun
Li, Dingshan
Xie, Qichao
Li, Yongsheng
FGF19/SOCE/NFATc2 signaling circuit facilitates the self-renewal of liver cancer stem cells
title FGF19/SOCE/NFATc2 signaling circuit facilitates the self-renewal of liver cancer stem cells
title_full FGF19/SOCE/NFATc2 signaling circuit facilitates the self-renewal of liver cancer stem cells
title_fullStr FGF19/SOCE/NFATc2 signaling circuit facilitates the self-renewal of liver cancer stem cells
title_full_unstemmed FGF19/SOCE/NFATc2 signaling circuit facilitates the self-renewal of liver cancer stem cells
title_short FGF19/SOCE/NFATc2 signaling circuit facilitates the self-renewal of liver cancer stem cells
title_sort fgf19/soce/nfatc2 signaling circuit facilitates the self-renewal of liver cancer stem cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7978301/
https://www.ncbi.nlm.nih.gov/pubmed/33754043
http://dx.doi.org/10.7150/thno.56369
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