Expression of cellular adhesion molecule 'OPCML' is down-regulated in gliomas and other brain tumours

J E Reed1, J R Dunn, D G du Plessis

  • 1JK Douglas Laboratories, Clatterbridge Hospital, Wirral, UK.

Insights

The cell adhesion molecule OPCML is significantly reduced or absent in most brain tumors. This downregulation suggests OPCML may play a role in brain tumor development and progression.

Area of Science:

  • Neuroscience
  • Oncology
  • Molecular Biology

Background:

  • The IgLON family comprises four GPI-anchored cell adhesion molecules highly expressed in the nervous system.
  • These molecules form heterodimers ('Diglons') that modulate cell adhesion and axon migration.
  • OPCML and LSAMP are recently identified as potential tumor suppressor genes in ovarian and renal cancers.

Purpose of the Study:

  • To investigate the expression of OPCML in non-neoplastic brain tissue and various brain tumors.
  • To analyze OPCML splice variants (alpha1 and alpha2) in brain tissues and tumors.
  • To explore potential mechanisms of OPCML downregulation in brain tumors.

Main Methods:

  • Quantitative reverse transcriptase polymerase chain reaction (RT-PCR) was used to assess OPCML expression.
  • PCR with specific primers was employed to detect OPCML splice variants.
  • Analysis included non-neoplastic brain tissue, 35 brain tumors, and four glioma cell lines.

Main Results:

  • OPCML expression was high in cerebellum and reduced in cerebral cortex, frontal lobe, and meninges.
  • OPCML was significantly reduced or absent in 83% of brain tumors and all tested glioma cell lines.
  • Both OPCML splice variants (alpha1 and alpha2) were detected in non-neoplastic brain and some tumors, while others expressed only alpha2.
  • Hypermethylation of the alpha1 promoter did not correlate with expression levels in brain tumors.

Conclusions:

  • OPCML is frequently downregulated in brain tumors, suggesting a potential tumor suppressor role.
  • The downregulation mechanism in brain tumors may differ from ovarian tumors, possibly involving alternative promoters.
  • Further research into OPCML and other IgLONs is warranted for understanding brain tumor development and progression.

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