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A Method for Screening and Validation of Resistant Mutations Against Kinase Inhibitors
Published on: December 7, 2014
Crizotinib-resistant mutants of EML4-ALK identified through an accelerated mutagenesis screen
Abstract:
Activating gene rearrangements of anaplastic lymphoma kinase (ALK) have been identified as driver mutations in non-small-cell lung cancer, inflammatory myofibroblastic tumors, and other cancers. Crizotinib, a dual MET/ALK inhibitor, has demonstrated promising clinical activity in patients with non-small-cell lung cancer and inflammatory myofibroblastic tumors harboring ALK translocations. Inhibitors of driver kinases often elicit kinase domain mutations that confer resistance, and such mutations have been successfully predicted using in vitro mutagenesis screens. Here, this approach was used to discover an extensive set of ALK mutations that can confer resistance to crizotinib. Mutations at 16 residues were identified, structurally clustered into five regions around the kinase active site, which conferred varying degrees of resistance. The screen successfully predicted the L1196M, C1156Y, and F1174L mutations, recently identified in crizotinib-resistant patients. In separate studies, we demonstrated that crizotinib has relatively modest potency in ALK-positive non-small-cell lung cancer cell lines. A more potent ALK inhibitor, TAE684, maintained substantial activity against mutations that conferred resistance to crizotinib. Our study identifies multiple novel mutations in ALK that may confer clinical resistance to crizotinib, suggests that crizotinib's narrow selectivity window may underlie its susceptibility to such resistance and demonstrates that a more potent ALK inhibitor may be effective at overcoming resistance.
Insights
Activating gene rearrangements of anaplastic lymphoma kinase (ALK) drive cancers. Researchers identified new ALK mutations causing resistance to crizotinib, a targeted therapy.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Anaplastic lymphoma kinase (ALK) gene rearrangements are key drivers in non-small-cell lung cancer and other malignancies.
- Crizotinib, a dual MET/ALK inhibitor, shows clinical efficacy in ALK-translocation-positive cancers.
- Kinase domain mutations often confer resistance to targeted therapies, necessitating prediction and characterization.
Discussion:
- In vitro mutagenesis screens identified 16 ALK residues and five mutation clusters conferring crizotinib resistance.
- The screen predicted known resistance mutations (L1196M, C1156Y, F1174L) found in resistant patients.
- Crizotinib exhibits modest potency in ALK-positive non-small-cell lung cancer cell lines.
Key Insights:
- Novel ALK mutations conferring clinical resistance to crizotinib have been discovered.
- Crizotinib's narrow selectivity may contribute to its susceptibility to resistance mutations.
- A more potent ALK inhibitor, TAE684, demonstrated efficacy against crizotinib-resistant mutations.
Outlook:
- Further investigation into ALK resistance mechanisms is crucial for developing durable therapies.
- Targeted therapies with broader selectivity may overcome acquired resistance.
- The identified mutations can guide the development of next-generation ALK inhibitors.

