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Exportin 1 Inhibition Induces Nerve Growth Factor Receptor Expression to Inhibit the NF-κB Pathway in Preclinical
John A DeSisto1, Patrick Flannery1, Rakeb Lemma1
1Morgan Adams Foundation Pediatric Brain Tumor Research Program, University of Colorado School of Medicine, Aurora, Colorado.
Abstract:
High-grade glioma (HGG) is the leading cause of cancer-related death among children. Selinexor, an orally bioavailable, reversible inhibitor of the nuclear export protein, exportin 1, is in clinical trials for a range of cancers, including HGG. It inhibits the NF-κB pathway and strongly induces the expression of nerve growth factor receptor (NGFR) in preclinical cancer models. We hypothesized that selinexor inhibits NF-κB via upregulation of NGFR. In HGG cells, sensitivity to selinexor correlated with increased induction of cell surface NGFR expression. Knocking down NGFR in HGG cells increased proliferation, anchorage-independent growth, stemness markers, and levels of transcriptionally available nuclear NF-κB not bound to IκB-α, while decreasing apoptosis and sensitivity to selinexor. Increasing IκB-α levels in NGFR knockdown cells restored sensitivity to selinexor. Overexpression of NGFR using cDNA reduced levels of free nuclear NF-κB, decreased stemness markers, and increased markers of cellular differentiation. In all HGG lines tested, selinexor decreased phosphorylation of NF-κB at serine 536 (a site associated with increased transcription of proliferative and inflammatory genes). Because resistance to selinexor monotherapy occurred in our in vivo model, we screened selinexor with a panel of FDA-approved anticancer agents. Bortezomib, a proteasome inhibitor that inhibits the NF-κB pathway through a different mechanism than selinexor, showed synergy with selinexor against HGG in vitro Our results help elucidate selinexor's mechanism of action and identify NGFR as a potential biomarker of its effect in HGG and in addition suggest a combination therapy strategy for these challenging tumors.
Insights
Selinexor, an inhibitor of exportin 1, shows promise against high-grade glioma (HGG) by upregulating nerve growth factor receptor (NGFR) and inhibiting the NF-κB pathway. Combination therapy with bortezomib may overcome resistance.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- High-grade glioma (HGG) is a leading cause of pediatric cancer mortality.
- Selinexor, an exportin 1 inhibitor, targets various cancers, including HGG, by affecting the NF-κB pathway and inducing nerve growth factor receptor (NGFR).
Purpose of the Study:
- To investigate the mechanism of selinexor's action in HGG, focusing on the role of NGFR and the NF-κB pathway.
- To identify potential biomarkers for selinexor efficacy and explore combination therapies for HGG.
Main Methods:
- Assessed selinexor sensitivity in HGG cells, correlating it with NGFR expression.
- Utilized gene knockdown and overexpression of NGFR to study its effects on HGG cell proliferation, stemness, apoptosis, and NF-κB signaling.
- Investigated selinexor's impact on NF-κB phosphorylation.
- Screened selinexor in combination with FDA-approved agents against HGG models.
Main Results:
- Selinexor sensitivity in HGG cells correlated with increased NGFR expression.
- NGFR knockdown enhanced HGG cell proliferation and stemness while reducing apoptosis and selinexor sensitivity.
- NGFR overexpression decreased nuclear NF-κB, reduced stemness, and increased differentiation markers.
- Selinexor decreased NF-κB phosphorylation at serine 536.
- Synergy was observed between selinexor and bortezomib against HGG.
Conclusions:
- NGFR upregulation is a key mechanism for selinexor's anti-HGG activity, suggesting NGFR as a predictive biomarker.
- Targeting NGFR and the NF-κB pathway offers a therapeutic strategy for HGG.
- Combination therapy, such as selinexor with bortezomib, may overcome selinexor resistance in HGG.
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