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Updated: Feb 8, 2026

Modeling Spontaneous Metastatic Renal Cell Carcinoma mRCC in Mice Following Nephrectomy
Published on: April 29, 2014
A tightly controlled Src-YAP signaling axis determines therapeutic response to dasatinib in renal cell carcinoma
Jingya Sun1,2, Xin Wang1,2, Boyun Tang3
1Division of Anti-tumor Pharmacology, State Key Laboratory of Drug Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai 201203, China.
Abstract:
Over the past decade, therapies targeting the VEGF/VEGFR and mTOR pathways have served as the standard of care for the clinical management of renal cell carcinoma (RCC) patients. Albeit promising, these targeted drugs have attained only modest clinical benefits with limited prolonged progression-free survival. Therefore, alternative reasonable and applicable therapeutic approaches should be introduced to improve the clinical outcome of RCC patients. Methods: FDA approved kinase inhibitors were screened to evaluate their abilities to suppress the proliferation of RCC cells. Then, the downstream effector, therapeutic target and signaling pathway of the selected drug were identified by gene expression array, RNAi, kinase profile and rescue verification. Finally, the in vivo effectiveness of the drug was assessed in cell line-based xenograft models and patient-derived xenograft models. Results: In this study, we discovered that dasatinib is a potent agent that can impair RCC cell viability in vitro and decrease tumor growth in vivo. Mechanistically, we improved the understanding of the precise mechanistic role of YAP as a pivotal effector of dasatinib-induced anti-proliferation through Src-JNK-LIMD1-LATS signaling cascade in RCC cells. Meanwhile, our results indicated that the alteration of p-YAP is closely correlated to the growth inhibition caused by dasatinib in sensitive RCC models. Conclusion: Our findings provide evidence that dasatinib may serve as a powerful drug candidate to treat subgroups of RCC patients with hyper-activated Src-YAP signaling axis, and the alteration of p-YAP could serve as a functional response biomarker of dasatinib in RCC.
Insights
Dasatinib effectively inhibits renal cell carcinoma (RCC) cell growth by targeting the Src-YAP signaling pathway. This discovery offers a new therapeutic strategy and a potential biomarker for RCC treatment.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Current renal cell carcinoma (RCC) treatments targeting VEGF/VEGFR and mTOR pathways offer limited survival benefits.
- There is a critical need for novel therapeutic strategies to improve clinical outcomes in RCC patients.
Purpose of the Study:
- To screen FDA-approved kinase inhibitors for anti-proliferative effects on RCC cells.
- To elucidate the mechanism of action for promising drug candidates, including their downstream effectors and signaling pathways.
- To evaluate the in vivo efficacy of identified drugs in RCC models.
Main Methods:
- Screening of FDA-approved kinase inhibitors against RCC cell lines.
- Gene expression arrays, RNAi, and kinase profiling to identify drug targets and pathways.
- In vivo validation using xenograft and patient-derived xenograft models.
Main Results:
- Dasatinib demonstrated potent in vitro and in vivo anti-tumor activity against RCC.
- Dasatinib's anti-proliferative effect is mediated through the Src-JNK-LIMD1-LATS signaling cascade, impacting YAP.
- Phosphorylation of YAP (p-YAP) levels correlated with dasatinib-induced growth inhibition in sensitive RCC models.
Conclusions:
- Dasatinib shows potential as a therapeutic agent for RCC subgroups with hyper-activated Src-YAP signaling.
- Alterations in p-YAP can serve as a predictive biomarker for dasatinib response in RCC.
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