Combining the Tyrosine Kinase Inhibitor Cabozantinib and the mTORC1/2 Inhibitor Sapanisertib Blocks ERK Pathway Activity and Suppresses Tumor Growth in Renal Cell Carcinoma

Yige Wu(James S. McDonnell Foundation), Siqi Chen(James S. McDonnell Foundation), Xiaolu Yang(Washington University in St. Louis), Kazuhito Sato(James S. McDonnell Foundation), Preet Lal(Washington University in St. Louis), Yuefan Wang(Johns Hopkins University), Andrew Shinkle(Washington University in St. Louis), Michael C. Wendl(James S. McDonnell Foundation), Tina Primeau(Washington University in St. Louis), Yanyan Zhao(Washington University in St. Louis), Alanna Gould(Washington University in St. Louis), Hua Sun(James S. McDonnell Foundation), Jacqueline L. Mudd(Washington University in St. Louis), Jeremy Hoog(Washington University in St. Louis), R. Jay Mashl(James S. McDonnell Foundation), Matthew A. Wyczalkowski(James S. McDonnell Foundation), Chia-Kuei Mo(James S. McDonnell Foundation), Ruiyang Liu(James S. McDonnell Foundation), John M. Herndon(Washington University in St. Louis), Sherri R. Davies(Washington University in St. Louis), Di Liu(Washington University in St. Louis), Xi Ding(Washington University in St. Louis), Yvonne A. Evrard(Frederick National Laboratory for Cancer Research), Bryan E. Welm(Huntsman Cancer Institute), David H. Lum(Huntsman Cancer Institute), Mei Yee Koh(Huntsman Cancer Institute), Alana L. Welm(Huntsman Cancer Institute), Jeffrey H. Chuang(Jackson Laboratory), Jeffrey A. Moscow(National Cancer Institute), Funda Meric‐Bernstam(The University of Texas MD Anderson Cancer Center), Ramaswamy Govindan(Washington University in St. Louis), Shunqiang Li(Washington University in St. Louis), James J. Hsieh(Washington University in St. Louis), Ryan C. Fields(Washington University in St. Louis), Kian‐Huat Lim(Washington University in St. Louis), X. Cynthia(Washington University in St. Louis), Hui Zhang(Johns Hopkins University), Li Ding(James S. McDonnell Foundation), Feng Chen(Washington University in St. Louis)
Cancer Research
September 27, 2023
Cited by 20Open Access
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Abstract

Current treatment approaches for renal cell carcinoma (RCC) face challenges in achieving durable tumor responses due to tumor heterogeneity and drug resistance. Combination therapies that leverage tumor molecular profiles could offer an avenue for enhancing treatment efficacy and addressing the limitations of current therapies. To identify effective strategies for treating RCC, we selected ten drugs guided by tumor biology to test in six RCC patient-derived xenograft (PDX) models. The multitargeted tyrosine kinase inhibitor (TKI) cabozantinib and mTORC1/2 inhibitor sapanisertib emerged as the most effective drugs, particularly when combined. The combination demonstrated favorable tolerability and inhibited tumor growth or induced tumor regression in all models, including two from patients who experienced treatment failure with FDA-approved TKI and immunotherapy combinations. In cabozantinib-treated samples, imaging analysis revealed a significant reduction in vascular density, and single-nucleus RNA sequencing (snRNA-seq) analysis indicated a decreased proportion of endothelial cells in the tumors. SnRNA-seq data further identified a tumor subpopulation enriched with cell-cycle activity that exhibited heightened sensitivity to the cabozantinib and sapanisertib combination. Conversely, activation of the epithelial-mesenchymal transition pathway, detected at the protein level, was associated with drug resistance in residual tumors following combination treatment. The combination effectively restrained ERK phosphorylation and reduced expression of ERK downstream transcription factors and their target genes implicated in cell-cycle control and apoptosis. This study highlights the potential of the cabozantinib plus sapanisertib combination as a promising treatment approach for patients with RCC, particularly those whose tumors progressed on immune checkpoint inhibitors and other TKIs. SIGNIFICANCE: The molecular-guided therapeutic strategy of combining cabozantinib and sapanisertib restrains ERK activity to effectively suppress growth of renal cell carcinomas, including those unresponsive to immune checkpoint inhibitors.


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