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Proteasomal pathway inhibition as a potential therapy for NF2-associated meningioma and schwannoma
Srirupa Bhattacharyya1, Janet L Oblinger2, Roberta L Beauchamp1
1Department of Neurology and Center for Genomic Medicine, Massachusetts General Hospital, Boston, MA, USA.
Background:
Neurofibromatosis 2 (NF2) is an inherited disorder caused by bi-allelic inactivation of the NF2 tumor suppressor gene. NF2-associated tumors, including schwannoma and meningioma, are resistant to chemotherapy, often recurring despite surgery and/or radiation, and have generally shown cytostatic response to signal transduction pathway inhibitors, highlighting the need for improved cytotoxic therapies.
Methods:
Leveraging data from our previous high-throughput drug screening in NF2 preclinical models, we identified a class of compounds targeting the ubiquitin-proteasome pathway (UPP), and undertook studies using candidate UPP inhibitors, ixazomib/MLN9708, pevonedistat/MLN4924, and TAK-243/MLN7243. Employing human primary and immortalized meningioma (MN) cell lines, CRISPR-modified Schwann cells (SCs), and mouse Nf2-/- SCs, we performed dose response testing, flow cytometry-based Annexin V and cell cycle analyses, and RNA-sequencing to identify potential underlying mechanisms of apoptosis. In vivo efficacy was also assessed in orthotopic NF2-deficient meningioma and schwannoma tumor models.
Results:
Testing of three UPP inhibitors demonstrated potent reduction in cell viability and induction of apoptosis for ixazomib or TAK-243, but not pevonedistat. In vitro analyses revealed that ixazomib or TAK-243 downregulates expression of c-KIT and PDGFRα, as well as the E3 ubiquitin ligase SKP2 while upregulating genes associated with endoplasmic reticulum stress-mediated activation of the unfolded protein response (UPR). In vivo treatment of mouse models revealed delayed tumor growth, suggesting a therapeutic potential.
Conclusions:
This study demonstrates the efficacy of proteasomal pathway inhibitors in meningioma and schwannoma preclinical models and lays the groundwork for use of these drugs as a promising novel treatment strategy for NF2 patients.
Insights
Novel ubiquitin-proteasome pathway inhibitors, ixazomib and TAK-243, show promise for treating Neurofibromatosis 2 (NF2) tumors. These drugs effectively reduced cell viability and induced apoptosis in preclinical models, offering a potential new therapeutic strategy.
Area of Science:
- Oncology
- Genetics
- Pharmacology
Background:
- Neurofibromatosis 2 (NF2) is an inherited disorder linked to NF2 gene inactivation.
- NF2-associated tumors like schwannoma and meningioma are treatment-resistant, necessitating novel therapies.
Purpose of the Study:
- To investigate the efficacy of ubiquitin-proteasome pathway (UPP) inhibitors against NF2-associated tumors.
- To explore the mechanisms underlying the response to UPP inhibition in NF2 models.
Main Methods:
- Screened UPP inhibitors (ixazomib, pevonedistat, TAK-243) in human and mouse NF2 cell lines (meningioma, Schwann cells).
- Conducted dose-response, apoptosis, cell cycle, and RNA-sequencing analyses.
- Assessed in vivo efficacy in orthotopic NF2-deficient tumor models.
Main Results:
- Ixazomib and TAK-243 significantly reduced cell viability and induced apoptosis; pevonedistat showed no effect.
- These inhibitors downregulated c-KIT, PDGFRα, and SKP2, while upregulating unfolded protein response (UPR) genes.
- In vivo studies demonstrated delayed tumor growth in treated mouse models.
Conclusions:
- Proteasome pathway inhibitors are effective in preclinical NF2 meningioma and schwannoma models.
- Ixazomib and TAK-243 represent a promising novel therapeutic strategy for NF2 patients.
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