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Kinase Mutations and Imatinib Response in Patients With Metastatic Gastrointestinal Stromal Tumor
Michael C Heinrich1, Christopher L Corless1, George D Demetri1
1From the Oregon Health and Science University Cancer Institute, Oregon Health and Science University, and Portland Veterans Affairs Medical Center, Portland, OR; Dana-Farber Cancer Institute and Harvard Cancer Center, Boston, MA; Fox-Chase Cancer Center, Philadelphia, PA; University of Turku, Turku; University of Helsinki, Helsinki, Finland; and Novartis Oncology, Basel, Switzerland.
Purpose:
Most gastrointestinal stromal tumors (GISTs) express constitutively activated mutant isoforms of KIT or kinase platelet-derived growth factor receptor alpha (PDGFRA) that are potential therapeutic targets for imatinib mesylate. The relationship between mutations in these kinases and clinical response to imatinib was examined in a group of patients with advanced GIST.
Patients And Methods:
GISTs from 127 patients enrolled onto a phase II clinical study of imatinib were examined for mutations of KIT or PDGFRA. Mutation types were correlated with clinical outcome.
Results:
Activating mutations of KIT or PDGFRA were found in 112 (88.2%) and six (4.7%) GISTs, respectively. Most KIT mutations involved exon 9 (n = 23) or exon 11 (n = 85). All KIT mutant isoforms, but only a subset of PDGFRA mutant isoforms, were sensitive to imatinib, in vitro. In patients with GISTs harboring exon 11 KIT mutations, the partial response rate (PR) was 83.5%, whereas patients with tumors containing an exon 9 KIT mutation or no detectable mutation of KIT or PDGFRA had PR rates of 47.8% (P = .0006) and 0.0% (P < .0001), respectively. Patients whose tumors contained exon 11 KIT mutations had a longer event-free and overall survival than those whose tumors expressed either exon 9 KIT mutations or had no detectable kinase mutation.
Conclusion:
Activating mutations of KIT or PDGFRA are found in the vast majority of GISTs, and the mutational status of these oncoproteins is predictive of clinical response to imatinib. PDGFRA mutations can explain response and sensitivity to imatinib in some GISTs lacking KIT mutations.
Insights
Gastrointestinal stromal tumors (GISTs) with specific KIT mutations, particularly exon 11, show a better response to imatinib therapy. Understanding these mutations helps predict patient outcomes for advanced GIST.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacogenomics
Background:
- Most gastrointestinal stromal tumors (GISTs) are driven by activating mutations in KIT or PDGFRA kinases.
- These mutations represent key therapeutic targets for imatinib mesylate treatment in advanced GIST.
- The specific mutation type influences the efficacy of imatinib therapy.
Purpose of the Study:
- To investigate the relationship between specific KIT and PDGFRA mutations and clinical response to imatinib in advanced GIST patients.
- To correlate mutation status with treatment outcomes, including response rates and survival.
Main Methods:
- GIST samples from 127 patients in a phase II imatinib study were analyzed for KIT or PDGFRA mutations.
- Mutation types were identified and correlated with clinical outcomes.
- In vitro sensitivity of mutant isoforms to imatinib was assessed.
Main Results:
- Activating mutations in KIT were found in 88.2% of GISTs, and in PDGFRA in 4.7%.
- KIT mutations in exon 11 were associated with a high partial response rate (83.5%) and improved survival.
- Tumors with exon 9 KIT mutations or no detectable mutations showed significantly lower response rates and survival.
Conclusions:
- Activating KIT or PDGFRA mutations are prevalent in GISTs and predict response to imatinib.
- The specific mutational status, particularly exon 11 KIT mutations, is a strong predictor of clinical response and survival.
- PDGFRA mutations can account for imatinib sensitivity in a subset of GISTs lacking KIT mutations.
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