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Published on: October 20, 2023
Sialylation Inhibition Impairs Migration and Promotes Adhesion of GBM Cells
Deborah Gargano1, Mariangela Calvitto1, Antonella Niro1
1Department of Biosciences and Territory, University of Molise, 86090 Pesche, Italy.
Abstract:
Aberrant sialylation has been associated with many types of tumors, characterized by aggressiveness and undifferentiated state. However, not exhaustive investigations have been performed on the sialylation status in glioblastoma multiforme (GBM), the most common primary and lethal malignant brain tumor in humans. Hence, in this study we performed a comprehensive characterization of the sialylation status in GBM evaluating specific sialyltransferases and various types of sialic acids (Sias) in different GBM cell lines. First, through in silico analysis we showed that the sialyltransferases ST6GAL1, ST3GAL2 and ST8SIA4 are significantly up-regulated in GBM tissues and related to lower patient survival. Then, we evaluated the expression levels of these sialyltransferases and their related Sias and observed a high variability among the different GBM cell lines. In addition, using the pan-sialyltransferase inhibitor 3-Fax, we highlighted the role of sialylation in some of the main oncogenic properties of GBM. Indeed, a significant reduction in mobility and migration capacity along with increased adhesiveness of GBM cells was observed upon sialyltransferases inhibition. Our findings showed that aberrant expression of different Sias types is crucial for cell migration and adhesion ability of GBM cells, suggesting that Sias might represent biomarkers for GBM and be useful to design innovative therapeutic strategies.
Insights
Aberrant sialylation, involving sialic acids (Sias), is linked to glioblastoma multiforme (GBM) aggressiveness. Inhibiting sialyltransferases reduced GBM cell migration and increased adhesion, suggesting Sias as potential therapeutic targets and biomarkers.
Area of Science:
- Biochemistry
- Oncology
- Molecular Biology
Background:
- Aberrant sialylation is a hallmark of aggressive tumors.
- Glioblastoma multiforme (GBM) is a lethal brain tumor with incompletely understood sialylation status.
- Sialic acids (Sias) play roles in cellular processes relevant to cancer.
Purpose of the Study:
- To comprehensively characterize sialylation in GBM.
- To investigate the role of specific sialyltransferases and Sias in GBM.
- To explore the therapeutic potential of targeting sialylation in GBM.
Main Methods:
- In silico analysis of sialyltransferase gene expression in GBM tissues.
- Evaluation of sialyltransferase and Sias expression in GBM cell lines.
- Inhibition of sialyltransferases using 3-Fax and assessment of GBM cell behavior.
Main Results:
- Sialyltransferases ST6GAL1, ST3GAL2, and ST8SIA4 were upregulated in GBM tissues, correlating with lower patient survival.
- Significant variability in sialyltransferase and Sias expression was observed across GBM cell lines.
- Sialyltransferase inhibition reduced GBM cell migration and increased cell adhesion.
Conclusions:
- Aberrant sialylation is crucial for GBM cell migration and adhesion.
- Specific Sias and their associated enzymes are potential biomarkers for GBM.
- Targeting sialylation pathways may offer novel therapeutic strategies for GBM.
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