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Published on: August 27, 2017
Slit2 inhibits glioma cell invasion in the brain by suppression of Cdc42 activity
Jia-Jean Yiin1, Bo Hu, Michael J Jarzynka
1Department of Pathology, University of Pittsburgh Cancer Institute, Research Pavilion at the Hillman Cancer Center, Pittsburgh, PA 15213, USA.
Abstract:
Acquisition of insidious invasiveness by malignant glioma cells involves multiple genetic alterations in signaling pathways. Slit2, a chemorepulsive factor, controls cell migration of neuronal and glial cells during development and inhibits chemotaxic migration of various types of cells in vitro. However, the role of Slit2 in vitro remains controversial, and the biological significance of Slit2 expression in cancer cell invasion in vivo has not yet been determined. In the present study, we characterized the effects of Slit2 expression on the migration and invasion of invasive glioma cells in vitro and in vivo. By reverse transcriptase polymerase chain reaction (PCR) analyses, Slit2 was found to be expressed at lower levels in primary glioma specimens and invasive glioma cells compared with normal human brain cells and astrocytes. Ectopic expression of Slit2 or treatment with recombinant Slit2 on glioma cells attenuates cell migration and invasion through inhibition of Cdc42 activity in vitro. Cellular depletion of Robo1, a cognate receptor for Slit2, prevented Slit2 inhibition of Cdc42 activity and glioma cell migration. In vivo, expression of Slit2 by invasive SNB19 glioma cells markedly inhibited glioma cell infiltration into the brain of mice. Moreover, impediment of glioma cell invasion by Slit2 did not affect the expression of N-cadherin and beta-catenin in glioma cells. These results provide the first evidence demonstrating that Slit2-Robo1 inhibits glioma invasion through attenuating Cdc42 activity in vitro and in the brain. Understanding the mechanisms of Slit2-Robo1 inhibition of glioma cell invasion will foster new treatments for malignant gliomas.
Insights
Slit2, a protein, inhibits malignant glioma cell invasion by reducing cell migration. This Slit2-Robo1 pathway, by decreasing Cdc42 activity, offers a potential new therapeutic strategy for brain tumors.
Area of Science:
- Neuroscience
- Cancer Biology
- Molecular Biology
Background:
- Malignant gliomas exhibit increased invasiveness due to genetic alterations.
- Slit2, a chemorepulsive factor, regulates cell migration but its role in cancer invasion is unclear.
Purpose of the Study:
- To investigate the effect of Slit2 on glioma cell migration and invasion.
- To elucidate the molecular mechanisms underlying Slit2's action in glioma.
Main Methods:
- Reverse transcriptase PCR to analyze Slit2 expression in glioma tissues and cells.
- Ectopic Slit2 expression and recombinant Slit2 treatment in glioma cells.
- Robo1 depletion experiments.
- In vivo mouse models of glioma infiltration.
Main Results:
- Slit2 expression is lower in glioma cells compared to normal brain cells.
- Slit2 expression or treatment inhibits glioma cell migration and invasion in vitro by reducing Cdc42 activity.
- Robo1 depletion abolishes Slit2's inhibitory effects.
- Slit2 expression inhibits glioma cell infiltration in vivo without affecting N-cadherin or beta-catenin.
Conclusions:
- Slit2-Robo1 signaling inhibits glioma invasion by attenuating Cdc42 activity.
- This pathway represents a novel therapeutic target for malignant gliomas.
