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Updated: Feb 13, 2026

Observation of the Ciliary Movement of Choroid Plexus Epithelial Cells Ex Vivo
Published on: July 13, 2015
Mice Expressing Myc in Neural Precursors Develop Choroid Plexus and Ciliary Body Tumors
Morgan L Shannon1, Ryann M Fame1, Kevin F Chau2
1Department of Pathology, Boston Children's Hospital, Boston, Massachusetts.
Abstract:
Choroid plexus tumors and ciliary body medulloepithelioma are predominantly pediatric neoplasms. Progress in understanding the pathogenesis of these tumors has been hindered by their rarity and lack of models that faithfully recapitulate the disease. Here, we find that endogenous Myc proto-oncogene protein is down-regulated in the forebrain neuroepithelium, whose neural plate border domains give rise to the anterior choroid plexus and ciliary body. To uncover the consequences of persistent Myc expression, MYC expression was forced in multipotent neural precursors (nestin-Cre:Myc), which produced fully penetrant models of choroid plexus carcinoma and ciliary body medulloepithelioma. Nestin-mediated MYC expression in the epithelial cells of choroid plexus leads to the regionalized formation of choroid plexus carcinoma in the posterior domain of the lateral ventricle choroid plexus and the fourth ventricle choroid plexus that is accompanied by loss of multiple cilia, up-regulation of protein biosynthetic machinery, and hydrocephalus. Parallel MYC expression in the ciliary body leads also to up-regulation of protein biosynthetic machinery. Additionally, Myc expression in human choroid plexus tumors increases with aggressiveness of disease. Collectively, our findings expose a select vulnerability of the neuroepithelial lineage to postnatal tumorigenesis and provide a new mouse model for investigating the pathogenesis of these rare pediatric neoplasms.
Insights
Persistent Myc expression in neural precursors causes pediatric tumors like choroid plexus carcinoma and ciliary body medulloepithelioma, offering new models for rare cancer research.
Area of Science:
- Neuro-oncology
- Developmental Biology
- Cancer Genetics
Background:
- Choroid plexus tumors and ciliary body medulloepithelioma are rare pediatric neoplasms.
- Understanding their pathogenesis is limited by rarity and lack of disease models.
- Endogenous Myc proto-oncogene protein is downregulated in relevant neuroepithelium.
Purpose of the Study:
- To investigate the consequences of persistent Myc expression in neural precursors.
- To develop faithful animal models for choroid plexus carcinoma and ciliary body medulloepithelioma.
- To explore the role of Myc in the tumorigenesis of these pediatric neoplasms.
Main Methods:
- Forced MYC expression in multipotent neural precursors using nestin-Cre:Myc mice.
- Analysis of tumor formation, cellular changes, and associated pathologies.
- Correlation of Myc expression with disease aggressiveness in human tumors.
Main Results:
- Nestin-mediated MYC expression induced choroid plexus carcinoma and ciliary body medulloepithelioma.
- Tumorigenesis involved regionalized formation, loss of cilia, and upregulated protein synthesis.
- Increased Myc expression correlated with tumor aggressiveness in human samples.
- Observed hydrocephalus linked to choroid plexus tumors.
Conclusions:
- The neuroepithelial lineage exhibits vulnerability to postnatal tumorigenesis driven by Myc.
- The developed mouse models provide a platform for studying rare pediatric neoplasms.
- Myc dysregulation is a key factor in the pathogenesis of these tumors.
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