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Published on: May 3, 2021
High Wnt signaling represses the proapoptotic proteoglycan syndecan-2 in osteosarcoma cells
François-Xavier Dieudonné1, Allison Marion, Eric Haÿ
1Laboratory of Osteoblast Biology and Pathology, UMR 606 INSERM and University of Paris Diderot, Paris, France.
Abstract:
Osteosarcoma is characterized by frequent relapse and metastatic disease associated with resistance to chemotherapy. We previously showed that syndecan-2 is a mediator of the antioncogenic effect of chemotherapeutic drugs. The purpose of this work was to elucidate molecular mechanisms responsible for the low expression of syndecan-2 in osteosarcoma. We compared the regulatory activity of cis-acting DNA sequences of the syndecan-2 gene in osteosarcoma and osteoblastic cell lines. We identified a DNA region that negatively regulates syndecan-2 transcription in the osteosarcoma cells. T-cell factors (TCF) bind to this sequence in vivo. Wnt3a stimulation, beta-catenin activation, and TCF overexpression resulted in syndecan-2 repression, whereas Wnt inhibition using sFRP-1 increased syndecan-2 expression in U2OS cells. RhoA activation blunted the stimulatory effect of sFRP-1 on syndecan-2 transcription, whereas RhoA inhibition enhanced syndecan-2 expression. These results indicate that Wnt/beta-catenin and Wnt/RhoA signaling contribute to syndecan-2 repression. The alteration of syndecan-2 expression in osteosarcoma cell lines also seemed to be related to a higher shedding, controlled by Wnt/RhoA. Conversely, syndecan-2 was found to activate its own expression in U2OS cells through RhoA inhibition. These data identify a molecular network that may contribute to the low expression of the proapoptotic proteoglycan syndecan-2 in osteosarcoma cells. The high activity of the canonical Wnt pathway in the different osteosarcoma cells induces a constitutive repression of syndecan-2 transcription, whereas Wnt/RhoA signaling blocks the amplification loop of syndecan-2 expression. Our results identify syndecan-2 as a Wnt target and bring new insights into a possible pathologic role of Wnt signaling in osteosarcoma.
Insights
Osteosarcoma cells show low syndecan-2 expression due to Wnt pathway activation, which represses syndecan-2 transcription and shedding. This finding reveals syndecan-2 as a Wnt target, offering new insights into osteosarcoma pathology.
Area of Science:
- Molecular Biology
- Oncology
- Cell Signaling
Background:
- Osteosarcoma frequently relapses and metastasizes, often exhibiting chemoresistance.
- Syndecan-2 mediates the anti-cancer effects of chemotherapy drugs.
- Low syndecan-2 expression is observed in osteosarcoma, but the underlying mechanisms are unclear.
Purpose of the Study:
- To investigate the molecular mechanisms causing reduced syndecan-2 expression in osteosarcoma.
- To identify regulatory DNA sequences controlling syndecan-2 transcription.
- To elucidate the role of Wnt signaling pathways in syndecan-2 regulation.
Main Methods:
- Comparison of cis-acting DNA sequence regulatory activity in osteosarcoma and osteoblastic cell lines.
- In vivo analysis of T-cell factor (TCF) binding to regulatory DNA regions.
- Manipulation of Wnt/beta-catenin and Wnt/RhoA signaling pathways (e.g., using Wnt3a, sFRP-1, TCF overexpression, RhoA activation/inhibition).
Main Results:
- A DNA region negatively regulating syndecan-2 transcription in osteosarcoma cells was identified.
- T-cell factors (TCF) bind to this regulatory region.
- Wnt/beta-catenin and Wnt/RhoA signaling pathways were found to repress syndecan-2 transcription and increase its shedding.
- Syndecan-2 was shown to activate its own expression via RhoA inhibition in U2OS cells.
Conclusions:
- The study identifies a molecular network contributing to low syndecan-2 expression in osteosarcoma.
- Constitutive Wnt pathway activity in osteosarcoma leads to syndecan-2 transcriptional repression.
- Wnt/RhoA signaling inhibits syndecan-2 expression amplification loops.
- Syndecan-2 is a Wnt target, suggesting a pathological role for Wnt signaling in osteosarcoma.
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