Targeting PAK4 Inhibits Ras-Mediated Signaling and Multiple Oncogenic Pathways in High-Risk Rhabdomyosarcoma
Atreyi Dasgupta1, Laura Sierra1, Susan V Tsang2
1Texas Children's Cancer and Hematology Centers and The Faris D. Virani Ewing Sarcoma Center, Baylor College of Medicine, Houston, Texas.
Abstract:
Rhabdomyosarcoma (RMS) is the most prevalent pediatric soft-tissue sarcoma. Multimodal treatment, including surgery and traditional chemotherapy with radiotherapy, has contributed to improvements in overall survival rates. However, patients with recurrent or metastatic disease have 5-year survival rates of less than 30%. One reason for the lack of therapeutic advancement is identification and targeting of critical signaling nodes. p21-activated kinases (PAK) are a family of serine/threonine kinases downstream of multiple critical tumorigenic receptor tyrosine kinase receptors and oncogenic regulators, including IGFR and RAS signaling, that significantly contribute to aggressive malignant phenotypes. Here, we report that RMS cell lines and tumors exhibit enhanced PAK4 expression levels and activity, which are further activated by growth factors involved in RMS development. Molecular perturbation of PAK4 in multiple RMS models in vitro and in vivo resulted in inhibition of RMS development and progression. Fusion-positive and -negative RMS models were sensitive to two PAK4 small-molecule inhibitors, PF-3758309 and KPT-9274, which elicited significant antitumor and antimetastatic potential in several primary and metastatic in vivo models, including a relapsed RMS patient-derived xenograft model. Transcriptomic analysis of PAK4-targeted tumors revealed inhibition of the RAS-GTPase, Hedgehog, and Notch pathways, along with evidence of activation of antitumor immune response signatures. This PAK4-targeting gene signature showed prognostic significance for patients with sarcoma. Overall, our results show for the first time that PAK4 is a novel and viable therapeutic target for the treatment of high-risk RMS. SIGNIFICANCE: These data demonstrate a novel oncogenic role for PAK4 in rhabdomyosarcoma and show that targeting PAK4 activity is a promising viable therapeutic option for advanced rhabdomyosarcoma.
Insights
Targeting PAK4 shows promise for advanced rhabdomyosarcoma (RMS). Inhibiting PAK4 in RMS models reduced tumor growth and metastasis, suggesting PAK4 as a novel therapeutic target for high-risk pediatric cancer.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Signaling
Background:
- Rhabdomyosarcoma (RMS) is a common pediatric soft-tissue sarcoma with poor survival rates for recurrent or metastatic disease.
- Current treatments face limitations due to a lack of identified critical signaling nodes for targeted therapy.
- p21-activated kinases (PAK) are implicated in aggressive tumor phenotypes, acting downstream of key oncogenic pathways.
Purpose of the Study:
- To investigate the role of PAK4 in rhabdomyosarcoma development and progression.
- To evaluate the therapeutic potential of targeting PAK4 in preclinical RMS models.
Main Methods:
- Assessed PAK4 expression and activity in RMS cell lines and tumors.
- Utilized molecular perturbation of PAK4 in vitro and in vivo RMS models.
- Tested PAK4 small-molecule inhibitors (PF-3758309, KPT-9274) in various RMS models.
- Performed transcriptomic analysis to identify downstream signaling pathways affected by PAK4 inhibition.
Main Results:
- RMS exhibits elevated PAK4 expression and activity, further enhanced by growth factors.
- Inhibition of PAK4 suppressed RMS development and progression in vitro and in vivo.
- PAK4 inhibitors demonstrated significant antitumor and antimetastatic effects in multiple RMS models, including a relapsed patient-derived xenograft.
- Transcriptomic analysis revealed inhibition of RAS-GTPase, Hedgehog, and Notch pathways, with concurrent activation of antitumor immune responses.
Conclusions:
- PAK4 plays a critical oncogenic role in rhabdomyosarcoma.
- Targeting PAK4 represents a novel and promising therapeutic strategy for high-risk and advanced rhabdomyosarcoma.
- A PAK4-targeting gene signature has prognostic value in sarcoma patients.
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