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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.
Abstract:
The four GPI-anchored cell adhesion molecules that exemplify the IgLON family are most highly expressed in the nervous system and associate to form up to six different heterodimeric 'Diglons' that can modify cell adhesion and inhibit axon migration. Recently, two members, OPCML and LSAMP, were identified as putative tumour suppressor genes in ovarian and renal carcinomas respectively. In this study, we investigated OPCML expression in nonneoplastic brain tissue and 35 brain tumours (18 glioblastoma multiformes, five anaplastic gliomas, five meningiomas, six metastases and one medulloblastoma) and four glioma cell lines using quantitative reverse transcriptase polymerase chain reaction (RT-PCR). OPCML was highly expressed in cerebellum, less so in cerebral cortex, frontal lobe and meninges and was significantly reduced or absent in 83% of brain tumours and all cell lines compared with nonneoplastic whole brain. Two OPCML splice variants have been identified in humans, termed alpha1 and alpha2, but the latter has not been demonstrated in human neural tissues. Using PCR with specific primers, nonneoplastic brain and 3/6 of tested brain tumours expressed both splice variants, whereas the remaining brain tumours only expressed the alpha2 variant. Hypermethylation of the alpha1 OPCML promoter, associated with down-regulation of expression in ovarian tumours, did not correlate with expression levels in the subset of brain tumours tested, implying transcription of OPCML from an alternative promoter or a different mechanism of down-regulation. This study demonstrates that OPCML down-regulation occurs in the majority of brain tumours tested, warranting further investigation of OPCML and other IgLONs in the development and progression of brain tumours.
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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