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Whole Exome Sequencing Identifies PHF14 Mutations in Neurocytoma and Predicts Responsivity to the PDGFR Inhibitor
Dongyun Zhang1, William Yong2, Masoud Movassaghi2
1Department of Medicine, David Geffen School of Medicine, University of California, Los Angeles, CA 90095, USA.
Abstract:
Neurocytomas are rare low-grade brain tumors predominantly affecting young adults, but their cellular origin and molecular pathogenesis is largely unknown. We previously reported a sellar neurocytoma that secreted excess arginine vasopressin causing syndrome of inappropriate anti-diuretic hormone (SIADH). Whole exome sequencing in 21 neurocytoma tumor tissues identified somatic mutations in the plant homeodomain finger protein 14 (PHF14) in 3/21 (14%) tumors. Of these mutations, two were missense mutations and 4 caused splicing site losses, resulting in PHF14 dysfunction. Employing shRNA-mediated knockdown and CRISPR/Cas9-based knockout approaches, we demonstrated that loss of PHF14 increased proliferation and colony formation in five different human, mouse and rat mesenchymal and differentiated cell lines. Additionally, we demonstrated that PHF14 depletion resulted in upregulation of platelet derived growth factor receptor-alpha (PDGFRα) mRNA and protein in neuroblastoma SHSY-5Y cells and led to increased sensitivity to treatment with the PDGFR inhibitor Sunitinib. Furthermore, in a neurocytoma primary culture harboring splicing loss PHF14 mutations, overexpression of wild-type PHF14 and sunitinib treatment inhibited cell proliferation. Nude mice, inoculated with PHF14 knockout SHSY-5Y cells developed earlier and larger tumors than control cell-inoculated mice and Sunitinib administration caused greater tumor suppression in mice harboring PHF-14 knockout than control SHSY-5Y cells. Altogether our studies identified mutations of PHF14 in 14% of neurocytomas, demonstrate it can serve as an alternative pathway for certain cancerous behavior, and suggest a potential role for Sunitinib treatment in some patients with residual/recurrent neurocytoma.
Insights
Mutations in plant homeodomain finger protein 14 (PHF14) were found in 14% of neurocytomas. Loss of PHF14 promotes tumor growth, suggesting Sunitinib as a potential treatment for some neurocytoma patients.
Area of Science:
- Neuro-oncology
- Molecular Pathology
- Genetics
Background:
- Neurocytomas are rare, low-grade brain tumors with unknown origins.
- Previous work identified a neurocytoma secreting excess arginine vasopressin, causing SIADH.
Purpose of the Study:
- To investigate the genetic basis and molecular pathogenesis of neurocytomas.
- To identify potential therapeutic targets for neurocytoma treatment.
Main Methods:
- Whole exome sequencing of 21 neurocytoma tumor tissues.
- shRNA-mediated knockdown and CRISPR/Cas9-based knockout of PHF14.
- Cell proliferation, colony formation, and PDGFRα expression assays.
- In vivo studies using nude mice xenografts.
Main Results:
- Somatic mutations in PHF14 were identified in 14% of neurocytomas, leading to PHF14 dysfunction.
- PHF14 loss increased proliferation and colony formation in various cell lines.
- PHF14 depletion upregulated PDGFRα, increasing sensitivity to Sunitinib.
- PHF14 mutations and Sunitinib treatment inhibited neurocytoma cell proliferation in vitro.
- PHF14 knockout accelerated tumor growth in mice, with Sunitinib showing greater efficacy.
Conclusions:
- PHF14 mutations represent an alternative pathway contributing to neurocytoma development.
- PHF14 dysfunction promotes cancerous behavior, including increased proliferation.
- Sunitinib shows promise as a therapeutic agent for specific neurocytoma cases, particularly residual or recurrent disease.
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