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Updated: Jun 12, 2026

Molecular and Immunologic Techniques in a Genetically Engineered Mouse Model of Gastrointestinal Stromal Tumor
Published on: May 2, 2022
[Oncogenic signaling mechanisms in imatinib-resistant gastrointestinal stromal tumor]
Chun-meng Wang1, Ying-qiang Shi, Hong Fu
1Abdominal Department, Cancer Center, Department of Oncology, Shanghai Medical College, Fudan University, Shanghai 200032, China.
Objective:
To characterize oncogenic KIT signaling mechanisms in gastrointestinal stromal tumor(GIST), and to determine which signaling pathway might be of potential relevance to imatinib acquired resistance.
Methods:
The mutations of KIT and PDGFRa gene were evaluated and KIT downstream signaling profiles were evaluated in 8 specimen from 5 GIST patients who were evaluated treated between 2003 and 2008 in our hospital. Biochemical inhibition of the expression of related proteins in Ras/Raf/MAPK and PI3-K/AKT pathways, such as KIT, mitogen-activated protein kinase(MAPK),mammalian target of rapamycin(MTOR), AKT, Proliferating cell nuclear antigen (PCNA) and BCL-2, were determined by Western blotting for protein activation.
Results:
Three cases who showed response to imatinib carried primary mutations in KIT gene, with 2 cases possessing mutation in exon 11, 1 case in exon 13. One case with imatinib-resistance developed KIT secondary mutation, but all the cases had no PDGFRa mutation. p-KIT and p-AKT expressions were higher in the samples of imatinib-resistant GIST than those of imatinib-responsive GIST. Total KIT, MAPK, p-MAPK, p-MTOR expressions were strong and comparable in all varied GISTs, which had no significant difference between imatinib-resistant and imatinib-responsive samples. PCNA and BCL-2 expression varied in samples of different therapy cycles and different location.
Conclusions:
Ras/Raf/MAPK and PI3-K/AKT/MTOR pathways are essential to GIST pathogenesis. The KIT secondary mutation and PI3-K/AKT/MTOR pathway are particularly relevant for therapeutic targeting in imatinib-resistant GIST.
Insights
Gastrointestinal stromal tumor (GIST) research reveals that KIT secondary mutations and the PI3-K/AKT/MTOR pathway are key to imatinib resistance. Targeting these may improve GIST treatment outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Signaling Pathways
Context:
- Gastrointestinal stromal tumors (GIST) are driven by oncogenic KIT signaling.
- Imatinib is a targeted therapy for GIST, but acquired resistance is a clinical challenge.
- Understanding resistance mechanisms is crucial for improving patient outcomes.
Purpose:
- To characterize oncogenic KIT signaling mechanisms in GIST.
- To identify signaling pathways involved in imatinib acquired resistance in GIST.
- To evaluate the role of Ras/Raf/MAPK and PI3-K/AKT/MTOR pathways in GIST pathogenesis and resistance.
Summary:
- Analysis of GIST patient samples revealed KIT mutations in imatinib-responsive cases.
- One imatinib-resistant case developed a secondary KIT mutation, with no PDGFRa mutations observed.
- Elevated p-KIT and p-AKT expression correlated with imatinib resistance, while Ras/Raf/MAPK pathway markers showed no significant difference.
Impact:
- The study identifies secondary KIT mutations and the PI3-K/AKT/MTOR pathway as critical targets for overcoming imatinib resistance in GIST.
- Findings provide a basis for developing novel therapeutic strategies for imatinib-resistant GIST.
- Enhanced understanding of GIST signaling pathways can lead to more effective personalized treatment approaches.
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