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Targeting A20 decreases glioma stem cell survival and tumor growth
Anita B Hjelmeland1, Qiulian Wu, Sarah Wickman
1Department of Stem Cell Biology and Regenerative Medicine, Lerner Research Institute, Cleveland Clinic, Cleveland, Ohio, United States of America. hjelmea@ccf.org
Abstract:
Glioblastomas are deadly cancers that display a functional cellular hierarchy maintained by self-renewing glioblastoma stem cells (GSCs). GSCs are regulated by molecular pathways distinct from the bulk tumor that may be useful therapeutic targets. We determined that A20 (TNFAIP3), a regulator of cell survival and the NF-kappaB pathway, is overexpressed in GSCs relative to non-stem glioblastoma cells at both the mRNA and protein levels. To determine the functional significance of A20 in GSCs, we targeted A20 expression with lentiviral-mediated delivery of short hairpin RNA (shRNA). Inhibiting A20 expression decreased GSC growth and survival through mechanisms associated with decreased cell-cycle progression and decreased phosphorylation of p65/RelA. Elevated levels of A20 in GSCs contributed to apoptotic resistance: GSCs were less susceptible to TNFalpha-induced cell death than matched non-stem glioma cells, but A20 knockdown sensitized GSCs to TNFalpha-mediated apoptosis. The decreased survival of GSCs upon A20 knockdown contributed to the reduced ability of these cells to self-renew in primary and secondary neurosphere formation assays. The tumorigenic potential of GSCs was decreased with A20 targeting, resulting in increased survival of mice bearing human glioma xenografts. In silico analysis of a glioma patient genomic database indicates that A20 overexpression and amplification is inversely correlated with survival. Together these data indicate that A20 contributes to glioma maintenance through effects on the glioma stem cell subpopulation. Although inactivating mutations in A20 in lymphoma suggest A20 can act as a tumor suppressor, similar point mutations have not been identified through glioma genomic sequencing: in fact, our data suggest A20 may function as a tumor enhancer in glioma through promotion of GSC survival. A20 anticancer therapies should therefore be viewed with caution as effects will likely differ depending on the tumor type.
Insights
A20 protein promotes glioblastoma stem cell (GSC) survival and tumor growth. Inhibiting A20 reduces GSC self-renewal and tumorigenic potential, offering a potential therapeutic target for brain tumors.
Area of Science:
- Oncology
- Cancer Stem Cell Biology
- Molecular Biology
Background:
- Glioblastomas exhibit a cellular hierarchy driven by glioblastoma stem cells (GSCs).
- GSCs possess unique molecular pathways that represent potential therapeutic targets.
- A20 (TNFAIP3), a regulator of cell survival and NF-kappaB, is implicated in cancer.
Purpose of the Study:
- To investigate the role of A20 in glioblastoma stem cell (GSC) function and survival.
- To determine if A20 is a viable therapeutic target for glioblastoma.
Main Methods:
- Quantification of A20 mRNA and protein levels in GSCs versus non-stem cells.
- Lentiviral-mediated short hairpin RNA (shRNA) to inhibit A20 expression in GSCs.
- Assays for cell-cycle progression, apoptosis, neurosphere formation, and tumorigenicity in vivo.
- In silico analysis of A20 expression and amplification in glioma patient data.
Main Results:
- A20 is overexpressed in GSCs compared to non-stem glioblastoma cells.
- A20 inhibition reduced GSC proliferation, survival, and self-renewal capacity.
- Knockdown of A20 sensitized GSCs to TNFalpha-induced apoptosis.
- Targeting A20 decreased GSC tumorigenicity and improved survival in xenograft models.
- A20 overexpression/amplification inversely correlated with patient survival.
Conclusions:
- A20 promotes glioblastoma maintenance by enhancing GSC survival and self-renewal.
- A20 functions as a tumor enhancer in glioblastoma, contrasting its role in lymphoma.
- Targeting A20 warrants further investigation as a therapeutic strategy for glioblastoma.
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