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Updated: Jul 18, 2026

Molecular and Immunologic Techniques in a Genetically Engineered Mouse Model of Gastrointestinal Stromal Tumor
Published on: May 2, 2022
Gastrointestinal stromal tumor (GIST) pathogenesis, familial GIST, and animal models
1Department of Pathology, Memorial Sloan-Kettering Cancer Center, New York, New York 10021, USA. antonesc@mskcc.org
Abstract:
Once a poorly understood pathologic entity, gastrointestinal stromal tumor (GIST) has emerged in recent years as a distinct oncologic-molecular paradigm that is now a leading model for kinase-targeted therapies in Oncology. Most GISTs are KIT-expressing and KIT-signaling driven mesenchymal tumors, many of which have KIT-activating mutations. A small subset of GIST show activating mutations in PDGFRA, encoding for a related member of the type III receptor tyrosine kinase family. The revelation of KIT expression as a diagnostic signature of GIST has not only revolutionized the pathologic criteria in classifying GIST, but also shed light onto the histogenesis of these tumors. The similarities in KIT immunoreactivity and ultrastructural appearance between GISTs and the intestinal pacemaker, the interstitial cells of Cajal (ICC), suggested that GISTs derive from or differentiate toward the ICC lineage. KIT plays a significant role in proliferation, survival, and differentiation of hematopoietic stem cells, mast cells, melanocytes, and interstitial cells of Cajal; and activating KIT mutations have been identified in tumors affecting most of these cell lineages. The observation that KIT mutations may be inherited, as seen in familial GIST syndrome, was used to develop murine models harboring a germline gain-of-function mutation, as a model for studying of KIT oncogenic mechanisms. These murine models of human GIST promise to become powerful preclinical tools in elucidating oncogenic signaling mechanisms by using genetic approaches and targeted pharmacological intervention. As true animal models of human cancer, they provide superior information compared with the more commonly used xenografts and transgenic mouse models. This review summarizes the recent knowledge on the central role of KIT oncogenic activation and subsequent signal transduction in the pathogenesis of GIST. In addition, we provide an updated discussion on familial GIST syndrome in relationship to genotype-phenotype characteristics. A succinct description of the available murine models of human GIST is presented and their applicability in further understanding of the KIT oncogenic signaling, drug screening, and mechanisms of drug resistance is discussed. This is a US government work. There are no restrictions on its use.
Insights
Gastrointestinal stromal tumors (GIST) are driven by KIT mutations, making them a key model for targeted cancer therapies. Murine models are crucial for studying KIT oncogenic signaling and developing new treatments.
Area of Science:
- Oncology
- Molecular Biology
- Gastroenterology
Background:
- Gastrointestinal stromal tumors (GIST) were poorly understood but are now recognized as a distinct molecular paradigm.
- Most GISTs are KIT-driven mesenchymal tumors, often with activating KIT mutations; a subset involves PDGFRA mutations.
- KIT signaling is crucial in various cell lineages, and its mutations are implicated in several tumor types.
Purpose of the Study:
- To review the central role of KIT oncogenic activation in GIST pathogenesis.
- To discuss familial GIST syndrome, genotype-phenotype correlations, and available murine models.
- To explore the utility of murine models for understanding KIT signaling, drug screening, and resistance.
Main Methods:
- Review of current literature on GIST molecular pathogenesis.
- Analysis of KIT and PDGFRA mutations in GIST.
- Description and evaluation of murine models for GIST research.
Main Results:
- KIT activation is central to GIST pathogenesis.
- KIT mutations are implicated in GIST and other tumors.
- Murine models offer valuable insights into KIT oncogenic mechanisms and therapeutic strategies.
Conclusions:
- GIST serves as a leading model for kinase-targeted therapies.
- Murine models are powerful preclinical tools for GIST research, drug discovery, and resistance studies.
- Understanding KIT signaling is key to advancing GIST treatment.

