Wnt activation promotes neuronal differentiation of Glioblastoma

被引:91
作者
Rampazzo, E. [1 ]
Persano, L. [1 ]
Pistollato, F. [1 ]
Moro, E. [2 ]
Frasson, C. [1 ]
Porazzi, P. [3 ]
Della Puppa, A. [4 ]
Bresolin, S. [1 ]
Battilana, G. [1 ]
Indraccolo, S. [5 ]
Te Kronnie, G. [1 ]
Argenton, F. [6 ]
Tiso, N. [6 ]
Basso, G. [1 ]
机构
[1] Univ Padua, Dept Woman & Child Hlth, Oncohematol Lab, I-35121 Padua, Italy
[2] Univ Padua, Dept Biomed Sci, I-35121 Padua, Italy
[3] Univ Milan, Dept Med Sci, Milan, Italy
[4] Univ Padua, Dept Neurosci, I-35121 Padua, Italy
[5] IRCCS, IOV, UOC Immunol & Diagnost Mol Oncol, Padua, Italy
[6] Univ Padua, Dept Biol, Dev Biol Lab, I-35121 Padua, Italy
来源
CELL DEATH & DISEASE | 2013年 / 4卷
关键词
Wnt; Hypoxia; Notch; glioblastoma stem cells; STRAND BREAK REPAIR; CANCER STEM-CELLS; BETA-CATENIN; MOLECULAR-MECHANISM; MGMT EXPRESSION; HYPOXIA; INHIBITION; ZEBRAFISH; RADIORESISTANCE; RESISTANCE;
D O I
10.1038/cddis.2013.32
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
One of the biggest challenges in tumour research is the possibility to reprogram cancer cells towards less aggressive phenotypes. In this study, we reprogrammed primary Glioblastoma multiforme (GBM)-derived cells towards a more differentiated and less oncogenic phenotype by activating the Wnt pathway in a hypoxic microenvironment. Hypoxia usually correlates with malignant behaviours in cancer cells, but it has been recently involved, together with Wnt signalling, in the differentiation of embryonic and neural stem cells. Here, we demonstrate that treatment with Wnt ligands, or overexpression of beta-catenin, mediate neuronal differentiation and halt proliferation in primary GBM cells. An hypoxic environment cooperates with Wnt-induced differentiation, in line with our finding that hypoxia inducible factor-1 alpha (HIF-1 alpha) is instrumental and required to sustain the expression of beta-catenin transcriptional partners TCF-1 and LEF-1. In addition, we also found that Wnt-induced GBM cell differentiation inhibits Notch signalling, and thus gain of Wnt and loss of Notch cooperate in the activation of a pro-neuronal differentiation program. Intriguingly, the GBM sub-population enriched of cancer stem cells (CD133(+) fraction) is the primary target of the pro-differentiating effects mediated by the crosstalk between HIF-1 alpha, Wnt, and Notch signalling. By using zebrafish transgenics and mutants as model systems to visualize and manipulate in vivo the Wnt pathway, we confirm that Wnt pathway activation is able to promote neuronal differentiation and inhibit Notch signalling of primary human GBM cells also in this in vivo set-up. In conclusion, these findings shed light on an unsuspected crosstalk between hypoxia, Wnt and Notch signalling in GBM, and suggest the potential to manipulate these microenvironmental signals to blunt GBM malignancy. Cell Death and Disease (2013) 4, e500; doi:10.1038/cddis.2013.32; published online 21 February 2013
引用
收藏
页码:e500 / e500
页数:14
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