Please use this identifier to cite or link to this item: https://doi.org/10.3390/cancers11010025
Title: Stemness, pluripotentiality, and wnt antagonism: SFRP4, a wnt antagonist mediates pluripotency and stemness in glioblastoma
Authors: Bhuvanalakshmi, G
Gamit, N
Patil, M
Arfuso, F
Sethi, G 
Dharmarajan, A
Kumar, A.P 
Warrier, S
Keywords: beta catenin
calcium
DNA
microRNA
microRNA 885
protein p53
reactive oxygen metabolite
secreted frizzled related protein 4
tumor necrosis factor receptor superfamily member 6
unclassified drug
Wnt protein
apoptosis
Article
cancer stem cell
cell nucleus
chromatin immunoprecipitation
controlled study
Cphx1 gene
DNA damage
ETS2 gene
gene expression regulation
gene knockdown
glioblastoma
glioblastoma cell line
homeobox
human
human cell
mesenchymal stem cell
pluripotent stem cell
protein function
protein localization
proto oncogene
RNA sequence
sequence analysis
U138MG cell line
U373MG cell line
U87MG cell line
upregulation
Wnt signaling
Issue Date: 2019
Citation: Bhuvanalakshmi, G, Gamit, N, Patil, M, Arfuso, F, Sethi, G, Dharmarajan, A, Kumar, A.P, Warrier, S (2019). Stemness, pluripotentiality, and wnt antagonism: SFRP4, a wnt antagonist mediates pluripotency and stemness in glioblastoma. Cancers 11 (1) : 25. ScholarBank@NUS Repository. https://doi.org/10.3390/cancers11010025
Rights: Attribution 4.0 International
Abstract: Background: Chemotherapeutic resistance of glioblastoma has been attributed to a self-renewing subpopulation, the glioma stem cells (GSCs), which is known to be maintained by the Wnt ? -catenin pathway. Our previous findings demonstrated that exogeneous addition of the Wnt antagonist, secreted fizzled-related protein 4 (sFRP4) hampered stem cell properties in GSCs. Methods: To understand the molecular mechanism of sFRP4, we overexpressed sFRP4 (sFRP4 OE) in three human glioblastoma cell lines U87MG, U138MG, and U373MG. We also performed chromatin immunoprecipitation (ChIP) sequencing of sFRP4 OE and RNA sequencing of sFRP4 OE and sFRP4 knocked down U87 cells. Results: We observed nuclear localization of sFRP4, suggesting an unknown nuclear role. ChIP-sequencing of sFRP4 pulldown DNA revealed a homeobox Cphx1, related to the senescence regulator ETS proto-oncogene 2 (ETS2). Furthermore, miRNA885, a p53-mediated apoptosis inducer, was upregulated in sFRP4 OE cells. RNA sequencing analysis suggested that sFRP4-mediated apoptosis is via the Fas-p53 pathway by activating the Wnt calcium and reactive oxygen species pathways. Interestingly, sFRP4 OE cells had decreased stemness, but when knocked down in multipotent mesenchymal stem cells, pluripotentiality was induced and the Wnt ?-catenin pathway was upregulated. Conclusions: This study unveils a novel nuclear role for sFRP4 to promote apoptosis by a possible activation of DNA damage machinery in glioblastoma. © 2018 by the authors. Licensee MDPI, Basel, Switzerland.
Source Title: Cancers
URI: https://scholarbank.nus.edu.sg/handle/10635/177798
ISSN: 20726694
DOI: 10.3390/cancers11010025
Rights: Attribution 4.0 International
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