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Updated: May 21, 2026

The Soft Agar Colony Formation Assay
Published on: October 27, 2014
P-cadherin is a direct PAX3-FOXO1A target involved in alveolar rhabdomyosarcoma aggressiveness
S Thuault1, S Hayashi, J Lagirand-Cantaloube
1Universités Montpellier 2 et 1, CRBM, CNRS, UMR 5237, Montpellier, France.
Abstract:
Alveolar rhabdomyosarcoma (ARMS) is an aggressive childhood cancer of striated muscle characterized by the presence of the PAX3-FOXO1A or PAX7-FOXO1A chimeric oncogenic transcription factor. Identification of their targets is essential for understanding ARMS pathogenesis. To this aim, we analyzed transcriptomic data from rhabdomyosarcoma samples and found that P-cadherin expression is correlated with PAX3/7-FOXO1A presence. We then show that expression of a PAX3 dominant negative variant inhibits P-cadherin expression in ARMS cells. Using mouse models carrying modified Pax3 alleles, we demonstrate that P-cadherin is expressed in the dermomyotome and lies genetically downstream from the myogenic factor Pax3. Moreover, in vitro gel shift analysis and chromatin immunoprecipitation indicate that the P-cadherin gene is a direct transcriptional target for PAX3/7-FOXO1A. Finally, P-cadherin expression in normal myoblasts inhibits myogenesis and induces myoblast transformation, migration and invasion. Conversely, P-cadherin downregulation by small hairpin RNA decreases the transformation, migration and invasive potential of ARMS cells. P-cadherin also favors cadherin switching, which is a hallmark of metastatic progression, by controlling N- and M-cadherin expression and/or localization. Our findings demonstrate that P-cadherin is a direct PAX3-FOXO1A transcriptional target involved in ARMS aggressiveness. Therefore, P-cadherin emerges as a new and attractive target for therapeutic intervention in ARMS.
Insights
Alveolar rhabdomyosarcoma (ARMS) is driven by PAX3/7-FOXO1A. This study identifies P-cadherin as a direct target, crucial for ARMS aggressiveness and potential therapeutic intervention.
Area of Science:
- Oncology
- Molecular Biology
- Developmental Biology
Background:
- Alveolar rhabdomyosarcoma (ARMS) is an aggressive pediatric striated muscle cancer.
- ARMS pathogenesis is linked to chimeric transcription factors PAX3-FOXO1A or PAX7-FOXO1A.
- Identifying targets of these factors is crucial for understanding ARMS.
Purpose of the Study:
- To identify transcriptional targets of PAX3/7-FOXO1A in ARMS.
- To investigate the role of P-cadherin in ARMS pathogenesis and aggressiveness.
- To explore P-cadherin as a potential therapeutic target in ARMS.
Main Methods:
- Transcriptomic analysis of rhabdomyosarcoma samples.
- In vitro studies using ARMS cell lines and dominant-negative PAX3 variants.
- Mouse models with modified Pax3 alleles.
- In vitro gel shift assays and chromatin immunoprecipitation.
- Small hairpin RNA-mediated downregulation of P-cadherin.
Main Results:
- P-cadherin expression is correlated with PAX3/7-FOXO1A presence in ARMS.
- P-cadherin is a direct transcriptional target of PAX3/7-FOXO1A.
- P-cadherin expression inhibits myogenesis and promotes myoblast transformation, migration, and invasion.
- P-cadherin downregulation reduces ARMS cell transformation, migration, and invasion.
- P-cadherin influences cadherin switching, a marker of metastasis.
Conclusions:
- P-cadherin is a direct transcriptional target of PAX3/7-FOXO1A and contributes to ARMS aggressiveness.
- P-cadherin plays a significant role in ARMS cell behavior, including transformation and invasion.
- P-cadherin represents a promising therapeutic target for ARMS.
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