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Updated: May 16, 2026

A Method for Screening and Validation of Resistant Mutations Against Kinase Inhibitors
Published on: December 7, 2014
BCR-ABL1 compound mutations in tyrosine kinase inhibitor-resistant CML: frequency and clonal relationships
Jamshid S Khorashad1, Todd W Kelley, Philippe Szankasi
1Huntsman Cancer Institute, The University of Utah, Salt Lake City, UT 84112, USA.
Abstract:
BCR-ABL1 compound mutations can confer high-level resistance to imatinib and other ABL1 tyrosine kinase inhibitors (TKIs). The third-generation ABL1 TKI ponatinib is effective against BCR-ABL1 point mutants individually, but remains vulnerable to certain BCR-ABL1 compound mutants. To determine the frequency of compound mutations among chronic myeloid leukemia patients on ABL1 TKI therapy, in the present study, we examined a collection of patient samples (N = 47) with clear evidence of 2 BCR-ABL1 kinase domain mutations by direct sequencing. Using a cloning and sequencing method, we found that 70% (33/47) of double mutations detected by direct sequencing were compound mutations. Sequential, branching, and parallel routes to compound mutations were common. In addition, our approach revealed individual and compound mutations not detectable by direct sequencing. The frequency of clones harboring compound mutations with more than 2 missense mutations was low (10%), whereas the likelihood of silent mutations increased disproportionately with the total number of mutations per clone, suggesting a limited tolerance for BCR-ABL1 kinase domain missense mutations. We conclude that compound mutations are common in patients with sequencing evidence for 2 BCR-ABL1 mutations and frequently reflect a highly complex clonal network, the evolution of which may be limited by the negative impact of missense mutations on kinase function.
Insights
Compound mutations in BCR-ABL1 are common in chronic myeloid leukemia patients receiving tyrosine kinase inhibitor therapy. These complex mutations often arise through various evolutionary routes, impacting treatment effectiveness.
Area of Science:
- Hematology
- Molecular Biology
- Oncology
Background:
- BCR-ABL1 compound mutations confer resistance to imatinib and other ABL1 tyrosine kinase inhibitors (TKIs).
- Ponatinib, a third-generation TKI, is effective against single BCR-ABL1 mutants but vulnerable to certain compound mutants.
Purpose of the Study:
- To determine the frequency of compound mutations in chronic myeloid leukemia (CML) patients on ABL1 TKI therapy.
- To characterize the mutational landscape and evolutionary routes of BCR-ABL1 compound mutations.
Main Methods:
- Direct sequencing of BCR-ABL1 kinase domain mutations in 47 patient samples.
- Cloning and sequencing to identify compound mutations and assess clonal complexity.
Main Results:
- 70% of double mutations detected by direct sequencing were confirmed as compound mutations using cloning and sequencing.
- Sequential, branching, and parallel evolutionary routes to compound mutations were frequently observed.
- The study identified mutations undetectable by direct sequencing, revealing a complex clonal network.
Conclusions:
- Compound mutations are prevalent in CML patients with multiple BCR-ABL1 mutations, often forming complex clonal networks.
- The evolution of these mutations may be constrained by the negative impact of missense mutations on BCR-ABL1 kinase function.
- Understanding compound mutation frequency and evolution is crucial for optimizing TKI therapy in CML.
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