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.

Biomedicines
|November 11, 2022
PubMed

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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