Foretinib is a potent inhibitor of oncogenic ROS1 fusion proteins
Monika A Davare1, Anna Saborowski, Christopher A Eide
1Knight Cancer Institute, Howard Hughes Medical Institute, and Departments of Biochemistry and Molecular Biology and Cell and Developmental Biology, Oregon Health and Sciences University, Portland, OR 97239.
Abstract:
The rapidly growing recognition of the role of oncogenic ROS1 fusion proteins in the malignant transformation of multiple cancers, including lung adenocarcinoma, cholangiocarcinoma, and glioblastoma, is driving efforts to develop effective ROS1 inhibitors for use as molecularly targeted therapy. Using a multidisciplinary approach involving small molecule screening in combination with in vitro and in vivo tumor models, we show that foretinib (GSK1363089) is a more potent ROS1 inhibitor than crizotinib (PF-02341066), an ALK/ROS inhibitor currently in clinical evaluation for lung cancer patients harboring ROS1 rearrangements. Whereas crizotinib has demonstrated promising early results in patients with ROS1-rearranged non-small-cell lung carcinoma, recently emerging clinical evidence suggests that patients may develop crizotinib resistance due to acquired point mutations in the kinase domain of ROS1, thus necessitating identification of additional potent ROS1 inhibitors for therapeutic intervention. We confirm that the ROS1(G2032R) mutant, recently reported in clinical resistance to crizotinib, retains foretinib sensitivity at concentrations below safe, clinically achievable levels. Furthermore, we use an accelerated mutagenesis screen to preemptively identify mutations in the ROS1 kinase domain that confer resistance to crizotinib and demonstrate that these mutants also remain foretinib sensitive. Taken together, our data strongly suggest that foretinib is a highly effective ROS1 inhibitor, and further clinical investigation to evaluate its potential therapeutic benefit for patients with ROS1-driven malignancies is warranted.
Insights
Foretinib is a potent ROS1 inhibitor, more effective than crizotinib for treating ROS1-driven cancers. It shows efficacy against resistant ROS1 mutations, warranting further clinical investigation for molecularly targeted therapy.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Oncogenic ROS1 fusions drive various cancers, including lung adenocarcinoma.
- Targeted therapies like crizotinib show promise but face resistance.
- New ROS1 inhibitors are needed to overcome acquired resistance mutations.
Purpose of the Study:
- To evaluate foretinib as a potent ROS1 inhibitor.
- To compare foretinib's efficacy against crizotinib, especially in resistant ROS1 mutants.
- To identify potential new therapeutic strategies for ROS1-driven malignancies.
Main Methods:
- Multidisciplinary approach: small molecule screening, in vitro and in vivo tumor models.
- Assessed foretinib and crizotinib potency against ROS1.
- Utilized accelerated mutagenesis screens to identify resistance mutations.
Main Results:
- Foretinib demonstrates greater potency as a ROS1 inhibitor compared to crizotinib.
- Foretinib effectively inhibits the ROS1(G2032R) resistance mutant.
- Preemptively identified crizotinib-resistant ROS1 mutants remain sensitive to foretinib.
Conclusions:
- Foretinib is a highly effective ROS1 inhibitor with potential against resistant mutations.
- Foretinib warrants further clinical investigation for ROS1-driven cancers.
- Foretinib represents a promising therapeutic option for molecularly targeted therapy.
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