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ROCK2 Downregulation in Pediatric Medulloblastoma Increases Migration and Predicts the Involvement of SHH
Rodrigo Guedes Hakime1,2, Luís Fernando Peinado Nagano3, María Sol Brassesco2
1Department of Cell and Molecular Biology, Ribeirão Preto Medical School, University of São Paulo, Ribeirão Preto, São Paulo, Brazil.
Abstract:
The participation of the Rho-associated protein kinases (ROCK1 and 2) in the regulation of actin cytoskeleton organization, cell adhesion, motility, and gene expression has been extensively investigated in many tumors of different histology. However, their pathogenic roles in medulloblastoma (MB) remain understudied, demanding a deeper appreciation of their participation in cancer cell dissemination and tumor progression. Herein, we show that ROCK2 is downregulated in MB tumor samples and functionally increases migration of cell lines belonging to the SHH subgroup. A comprehensive comparative bioinformatic scrutiny of differentially expressed genes within a list of ROCK2 candidate substrates, uncovered a network of 21 dysregulated genes from which DYPSL3 (dihydropyrimidinase-related protein 3) denoted a strong positive correlation. Enrichment analysis revealed SHH/RHOA/ROCK2/DYPSL3 as top hub genes and the intersection between two biological processes of most importance in MB: actin cytoskeleton remodeling and neuron development. Of note, evidence shows that both ROCK2 and DYPSL3, interact with RHOA and in many tumor types they act as tumor suppressors, mitigating cell spreading. Alternatively, their impaired activity leads to undifferentiated phenotypes and inappropriate cytoskeletal dynamics affecting cell shape, attachment to the extracellular matrix, and cell movement. In parallel, cell motility is considered a prototypical non-canonical response to SHH mediated by RHOA. Therefore, we propose a model in which the interplay between these pathways may lead to a perturbation of proper cytoskeletal dynamics that underpins cell migration.
Insights
Rho-associated protein kinases (ROCK2) are downregulated in medulloblastoma, promoting cancer cell migration. DYPSL3 also correlates with ROCK2, suggesting a role in tumor progression and cytoskeletal dynamics.
Area of Science:
- Oncology
- Cell Biology
- Molecular Biology
Background:
- Rho-associated protein kinases (ROCK1 and 2) regulate crucial cellular processes like cytoskeleton organization and cell motility.
- Their role in medulloblastoma (MB) pathogenesis, particularly in cancer cell dissemination and tumor progression, is understudied.
Purpose of the Study:
- To investigate the pathogenic roles of ROCK1 and ROCK2 in medulloblastoma.
- To elucidate the functional impact of ROCK2 downregulation on MB cell migration and identify associated molecular networks.
Main Methods:
- Comparative bioinformatic analysis of differentially expressed genes in MB tumor samples.
- Identification of ROCK2 candidate substrates and correlation analysis with ROCK2 expression.
- Enrichment analysis to uncover key biological pathways and hub genes.
Main Results:
- ROCK2 was found to be downregulated in MB tumor samples.
- Downregulation of ROCK2 functionally increased the migration of SHH subgroup MB cell lines.
- A network of 21 dysregulated genes was identified, with DYPSL3 (dihydropyrimidinase-related protein 3) showing a strong positive correlation with ROCK2.
- Enrichment analysis highlighted SHH/RHOA/ROCK2/DYPSL3 as top hub genes, linking actin cytoskeleton remodeling and neuron development.
Conclusions:
- The study proposes a model where impaired ROCK2 and DYPSL3 activity, potentially through interaction with RHOA, perturbs cytoskeletal dynamics, leading to increased cell migration in medulloblastoma.
- ROCK2 and DYPSL3 may function as tumor suppressors in MB, with their downregulation contributing to cancer cell dissemination.
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