Functional analysis of KIF20A, a potential immunotherapeutic target for glioma

Katsuya Saito1, Shigeki Ohta2, Yutaka Kawakami2

  • 1Department of Neurosurgery, Keio University School of Medicine, 35 Shinanomachi, Shinjuku-ku, Tokyo, 160-8582, Japan.

Journal of Neuro-Oncology
|January 11, 2017
PubMed

Insights

Kinesin family member 20A (KIF20A) is highly expressed in gliomas and drives tumor growth by affecting cell division. Inhibiting KIF20A reduces glioma cell proliferation and induces apoptosis, suggesting it as a potential immunotherapy target.

Area of Science:

  • Neuro-oncology
  • Molecular Biology
  • Cancer Immunology

Background:

  • Kinesin family member 20A (KIF20A) is a cancer-testis antigen investigated for pancreatic cancer immunotherapy.
  • Its role in glioma, a type of brain tumor, remains largely unexplored.

Purpose of the Study:

  • To investigate the expression and functional significance of KIF20A in gliomas.
  • To evaluate KIF20A as a potential molecular target for glioma therapy.

Main Methods:

  • Western blot and quantitative PCR to assess KIF20A expression in glioma cell lines and tissues.
  • Immunohistochemistry to localize KIF20A within glioma cells and tissues.
  • In silico analysis of microarray data to correlate KIF20A expression with glioma grade and patient prognosis.
  • Functional studies involving KIF20A down-regulation to assess effects on cell proliferation, cytokinesis, and apoptosis.

Main Results:

  • KIF20A expression was significantly elevated in glioma cell lines and tissues compared to normal brain.
  • KIF20A was localized to mitotic spindles and midbodies, indicating involvement in cell division.
  • Higher KIF20A expression correlated with advanced pathological grade and poorer patient prognosis.
  • Down-regulation of KIF20A impaired cytokinesis, led to binucleated cells, reduced proliferation, and induced apoptosis in glioma cells.

Conclusions:

  • KIF20A functions as an oncoantigen in gliomas, promoting cell growth and survival.
  • KIF20A is a promising novel immunotherapeutic target for glioma treatment.

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