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EGFR-ERK pathway regulates CSN6 to contribute to PD-L1 expression in glioblastoma
Lingrui Su1,2, Wenli Guo1, Lei Lou1
1Department of Pathology, The Second Hospital of Hebei Medical University, Shijiazhuang, China.
Abstract:
Glioblastoma (GBM) is the most common and malignant brain tumor in adults. Recently, programmed death-1/programmed death-ligand 1 (PD-1/PD-L1) checkpoint blockades have been applied for GBM treatment. However, the mechanism of PD-L1 upregulation in GBM is still unclear. COP9 signalosome 6 (CSN6) is crucial for maintaining the protein stabilization in cancer cells. In this study, we applied human GBM specimens and cell lines to investigate whether the EGFR-ERK pathway regulates CSN6 for PD-L1 upregulation. Data from The Cancer Genome Atlas dataset showed that high expression of EGFR, CSN6, and PD-L1 in patients with glioma was associated with poor prognosis. In 47 human GBM specimens, high expression of PD-L1 was associated with low amount of CD8+ T cell infiltration as well as the poor prognosis of patients. CSN6 was positively correlated with EGFR and PD-L1 expression in human GBM specimens. We treated two GBM cell lines (U87 and U251) with epidermal growth factor (EGF) in vitro, and found EGF-upregulated p-EGFR, p-ERK, CSN6, and PD-L1 expression in GBM cells. PD98059, the ERK blocker, inhibited upregulations of CSN6 and PD-L1 in EGF-treated cells. Inhibition of CSN6 by small interfering RNA decreased PD-L1 expression but also increased CHIP expression in GBM cells. When the cells were treated with EGF and cycloheximide (CHX), a protein synthesis inhibitor, EGF-reduced CHX-induced CSN6 and PD-L1 turnover in GBM cells. Furthermore, CSN6-mediated downregulation of PD-L1 was inhibited by MG132, a proteasome inhibitor in U87 cells. Thus, these results suggest that the EGFR-ERK pathway may upregulate CSN6, which may inhibit PD-L1 degradation and subsequently maintain PD-L1 stability in GBM.
Insights
The EGFR-ERK pathway upregulates COP9 signalosome 6 (CSN6) in glioblastoma (GBM). CSN6 then stabilizes programmed death-ligand 1 (PD-L1), contributing to GBM progression and poor prognosis.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Glioblastoma (GBM) is a highly aggressive adult brain tumor.
- Programmed death-1/programmed death-ligand 1 (PD-1/PD-L1) checkpoint inhibitors are used in GBM treatment.
- The mechanism of PD-L1 upregulation in GBM remains unclear.
Purpose of the Study:
- To investigate if the EGFR-ERK pathway regulates COP9 signalosome 6 (CSN6) for PD-L1 upregulation in GBM.
- To explore the correlation between EGFR, CSN6, PD-L1 expression, and patient prognosis in glioma.
Main Methods:
- Analysis of The Cancer Genome Atlas (TCGA) dataset for glioma patients.
- Immunohistochemical analysis of 47 human GBM specimens.
- In vitro experiments using GBM cell lines (U87, U251) treated with epidermal growth factor (EGF) and inhibitors (PD98059, CHX, MG132).
- Gene silencing using small interfering RNA (siRNA) against CSN6.
Main Results:
- High EGFR, CSN6, and PD-L1 expression correlated with poor prognosis in glioma patients.
- High PD-L1 expression in GBM specimens was linked to reduced CD8+ T cell infiltration and poorer prognosis.
- EGF treatment upregulated EGFR, ERK, CSN6, and PD-L1 in GBM cells; ERK inhibition blocked these increases.
- CSN6 inhibition decreased PD-L1 expression and increased CHIP expression.
- EGF reduced the turnover of CSN6 and PD-L1; proteasome inhibition prevented CSN6-mediated PD-L1 downregulation.
Conclusions:
- The EGFR-ERK pathway promotes CSN6 upregulation in GBM.
- CSN6 stabilizes PD-L1 by inhibiting its degradation, contributing to GBM malignancy.
- Targeting the EGFR-ERK-CSN6-PD-L1 axis may offer new therapeutic strategies for GBM.
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