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GATA2 Regulates Constitutive PD-L1 and PD-L2 Expression in Brain Tumors
Yujie Fu1,2, Connor J Liu1,2, Dale K Kobayashi1,2
1Department of Neurological Surgery, Washington University School of Medicine, St. Louis, Missouri, USA.
Abstract:
Encouraging clinical results using immune checkpoint therapies to target the PD-1 axis in a variety of cancer types have paved the way for new immune therapy trials in brain tumor patients. However, the molecular mechanisms that regulate expression of the PD-1 pathway ligands, PD-L1 and PD-L2, remain poorly understood. To address this, we explored the cell-intrinsic mechanisms of constitutive PD-L1 and PD-L2 expression in brain tumors. PD-L1 and PD-L2 expression was assessed by flow cytometry and qRT-PCR in brain tumor cell lines and patient tumor-derived brain tumor-initiating cells (BTICs). Immunologic effects of PD-L2 overexpression were evaluated by IFN-γ ELISPOT. CD274 and PDCD1LG2 cis-regulatory regions were cloned from genomic DNA and assessed in full or by mutating and/or deleting regulatory elements by luciferase assays. Correlations between clinical responses and PD-L1 and PD-L2 expression status were evaluated in TCGA datasets in LGG and GBM patients. We found that a subset of brain tumor cell lines and BTICs expressed high constitutive levels of PD-L1 and PD-L2 and that PD-L2 overexpression inhibited neoantigen specific T cell IFN-γ production. Characterization of novel cis-regulatory regions in CD274 and PDCD1LG2 lead us to identify that GATA2 is sufficient to drive PD-L1 and PD-L2 expression and is necessary for PD-L2 expression. Importantly, in TCGA datasets, PD-L2 correlated with worse clinical outcomes in glioma patients.. By perturbing GATA2 biology, targeted therapies may be useful to decrease inhibitory effects of PD-L2 in the microenvironment.
Insights
This study reveals that GATA2 drives PD-L1 and PD-L2 expression in brain tumors, impacting immune response. Targeting GATA2 may offer new therapeutic strategies for glioma patients with poor outcomes.
Area of Science:
- Neuro-oncology
- Immunology
- Cancer Biology
Background:
- Immune checkpoint inhibitors targeting the PD-1 axis show promise in various cancers.
- Understanding PD-1 pathway ligand regulation is crucial for brain tumor immunotherapy.
- PD-L1 and PD-L2 expression mechanisms in brain tumors are poorly understood.
Purpose of the Study:
- To investigate cell-intrinsic mechanisms of constitutive PD-L1 and PD-L2 expression in brain tumors.
- To explore the role of regulatory elements and transcription factors in PD-1 ligand expression.
- To correlate PD-L1 and PD-L2 expression with clinical outcomes in glioma patients.
Main Methods:
- Flow cytometry and qRT-PCR to assess PD-L1/PD-L2 expression in brain tumor cell lines and BTICs.
- IFN-γ ELISPOT to evaluate immunologic effects of PD-L2 overexpression.
- Luciferase assays to analyze CD274 and PDCD1LG2 cis-regulatory regions.
- TCGA dataset analysis for clinical outcome correlations.
Main Results:
- A subset of brain tumor cells and BTICs exhibit high constitutive PD-L1 and PD-L2 expression.
- PD-L2 overexpression was found to inhibit neoantigen-specific T cell IFN-γ production.
- GATA2 was identified as sufficient for driving PD-L1/PD-L2 expression and necessary for PD-L2 expression.
- TCGA data showed PD-L2 expression correlates with worse clinical outcomes in glioma patients.
Conclusions:
- GATA2 plays a critical role in regulating PD-L1 and PD-L2 expression in brain tumors.
- Targeting GATA2 biology could be a potential therapeutic strategy to reduce PD-L2's inhibitory effects.
- Further research into GATA2 modulation may improve immunotherapy efficacy in glioma.
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