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Trastuzumab Decreases the Expression of G1/S Regulators and Syndecan-4 Proteoglycan in Human Rhabdomyosarcoma
Dora Julianna Szabo1,2, Eniko Toth1,2, Kitti Szabo1
1Department of Biochemistry, Faculty of Medicine, University of Szeged, 6720 Szeged, Hungary.
Abstract:
Rhabdomyosarcoma (RMS), the most common soft tissue sarcoma in children, arises from skeletal muscle cells that fail to differentiate terminally. Two subgroups of RMS, fusion-positive and fusion-negative RMS (FPRMS and FNRMS, respectively), are characterized by the presence or absence of the PAX3/7-FOXO1 fusion gene. RMSs frequently exhibit increased expression of human epidermal growth factor receptor-2 (HER2). Trastuzumab is a humanized monoclonal antibody targeting HER2, and its potential role in RMS treatment remains to be elucidated. Syndecan-4 (SDC4) is a heparan sulfate proteoglycan (HSPG) affecting myogenesis via Rac1-mediated actin remodeling. Previously, we demonstrated that the SDC4 gene is amplified in 28% of human FNRMS samples, associated with high mRNA expression, suggesting a tumor driver role. In this study, after analyzing the copy numbers and mRNA expressions of other HSPGs in human RMS samples, we found that in addition to SDC4, syndecan-1, syndecan-2, and glypican-1 were also amplified and highly expressed in FNRMS. In RD (human FNRMS) cells, elevated SDC4 expression was accompanied by low levels of phospho-Ser179 of SDC4, leading to high Rac1-GTP activity. Notably, this high SDC4 expression in RD cells decreased following trastuzumab treatment. Trastuzumab decreased the levels of G1/S checkpoint regulators cyclin E and cyclin D1 and reduced the cell number; however, it also downregulated the cyclin-dependent kinase inhibitor p21. The level of MyoD, a transcription factor essential for RMS cell survival, also decreased following trastuzumab administration. Our findings contribute to the understanding of the role of SDC4 in FNRMS. Since HER2 is expressed in about half of RMSs, the trastuzumab-mediated changes observed here may have therapeutic implications.
Insights
Trastuzumab treatment reduced syndecan-4 (SDC4) and MyoD levels in fusion-negative rhabdomyosarcoma (FNRMS) cells. This suggests potential therapeutic implications for HER2-expressing pediatric soft tissue sarcomas.
Area of Science:
- Oncology
- Molecular Biology
- Pediatric Cancer Research
Background:
- Rhabdomyosarcoma (RMS) is a pediatric soft tissue sarcoma.
- Fusion-negative RMS (FNRMS) lacks the PAX3/7-FOXO1 fusion gene.
- HER2 is often overexpressed in RMS, and Trastuzumab targets HER2.
Purpose of the Study:
- Investigate the role of syndecan-4 (SDC4) and other heparan sulfate proteoglycans (HSPGs) in FNRMS.
- Evaluate the effects of Trastuzumab on FNRMS cells, particularly those with high SDC4 expression.
Main Methods:
- Analysis of copy numbers and mRNA expression of HSPGs in human RMS samples.
- Treatment of RD (FNRMS) cells with Trastuzumab.
- Assessment of cell cycle regulators, Rac1 activity, and MyoD levels.
Main Results:
- SDC4, syndecan-1, syndecan-2, and glypican-1 were amplified and highly expressed in FNRMS.
- Elevated SDC4 in RD cells correlated with high Rac1-GTP activity.
- Trastuzumab treatment decreased SDC4, cyclin E, cyclin D1, and MyoD levels, and reduced cell number, but also downregulated p21.
Conclusions:
- SDC4 plays a role in FNRMS, potentially influencing Rac1 activity.
- Trastuzumab shows potential therapeutic effects in FNRMS by impacting key cellular pathways.
- Findings suggest Trastuzumab may be a viable treatment option for HER2-positive RMS.
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