Related Experiment Video
Updated: Jan 10, 2026

Characterization of Functionally Associated miRNAs in Glioblastoma and their Engineering into Artificial Clusters for Gene Therapy
Published on: October 4, 2019
ZBTB7B inhibits glioma tumorigenicity by upregulating GPR17 and CXCL10
Linmei Zhang1, Haozhe Zhang2, Chenxi Wang2
1School of Stomatology, Xi'an Medical University, Xi'an 710021, China.
Abstract:
The transcription factor ZBTB7B has been identified as a potential tumor suppressor through a CRISPR-Cas9-based functional screen of tumor-associated genes, as overexpression of ZBTB7B could significantly suppress tumor growth in the models of breast cancer brain metastasis, which prompted our further exploration of its inhibitory role in glioma. To elucidate the underlying mechanisms of this suppressive effect, lentiviral-mediated ZBTB7B overexpression was established in U118 and GL261 glioma cell lines, and systematic evaluation of tumorigenic capacity was performed through in vitro and xenograft assays. The results showed that ZBTB7B transcriptionally activated GPR17 expression, which suppressed protein kinase A phosphorylation, amplified mitochondrial reactive oxygen species generation, and triggered Caspase3-dependent apoptosis. Meanwhile, ZBTB7B upregulated CXCL10 secretion, which markedly enhanced CD4+ and CD8+ T cell accumulation. Clinical validation through multiplex immunofluorescence staining on a tissue microarray of 129 glioma samples revealed a progressive loss of ZBTB7B protein expression across WHO grades II to IV, inversely correlating with tumor malignancy. These findings demonstrate ZBTB7B as a dual-function tumor suppressor that concurrently induces intrinsic apoptosis and remodels the tumor immune microenvironment in glioma toward a 'hot' phenotype. Therefore, we propose ZBTB7B reactivation as a novel therapeutic strategy for glioma.
Insights
The transcription factor ZBTB7B suppresses glioma growth by activating apoptosis and enhancing anti-tumor immunity. Loss of ZBTB7B correlates with tumor malignancy, suggesting its reactivation as a therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- ZBTB7B, identified via CRISPR-Cas9 screening, shows potential as a tumor suppressor.
- Overexpression of ZBTB7B inhibited breast cancer brain metastasis, prompting investigation in glioma.
Purpose of the Study:
- To elucidate the mechanisms by which ZBTB7B suppresses glioma growth.
- To evaluate ZBTB7B's role in the glioma tumor microenvironment and its therapeutic potential.
Main Methods:
- Lentiviral-mediated ZBTB7B overexpression in U118 and GL261 glioma cell lines.
- In vitro and xenograft assays to assess tumorigenic capacity.
- Multiplex immunofluorescence staining on 129 glioma patient samples.
Main Results:
- ZBTB7B activated GPR17, leading to suppressed PKA phosphorylation, increased ROS, and Caspase3-dependent apoptosis.
- ZBTB7B upregulated CXCL10, enhancing CD4+ and CD8+ T cell infiltration.
- ZBTB7B protein expression decreased progressively with increasing glioma WHO grade.
Conclusions:
- ZBTB7B acts as a dual-function tumor suppressor in glioma, inducing apoptosis and promoting a 'hot' tumor immune microenvironment.
- Reactivating ZBTB7B presents a novel therapeutic strategy for glioma treatment.
More Related Videos
10:28Flow Cytometry-based Drug Screening System for the Identification of Small Molecules That Promote Cellular Differentiation of Glioblastoma Stem Cells
Published on: January 10, 2018
12:52Isolation and Flow Cytometric Analysis of Glioma-infiltrating Peripheral Blood Mononuclear Cells
Published on: November 28, 2015