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Updated: Jun 21, 2026

Cancer-Associated Fibroblasts from Mouse Mammary Tumors as Tools for Molecular and Computational Studies
Published on: July 3, 2025
High density DNA array analysis reveals distinct genomic profiles in a subset of gastrointestinal stromal tumors
Martin G Belinsky1, Yuliya V Skorobogatko, Lori Rink
1Department of Medical Oncology, Fox Chase Cancer Center, Philadelphia, PA 19111-2497, USA. martin.belinsky@fccc.edu
Abstract:
Gastrointestinal stromal tumors (GISTs) generally harbor activating mutations in KIT or platelet-derived growth facter receptor (PDGFRA). Mutations in these receptor tyrosine kinases lead to dysregulation of downstream signaling pathways that contribute to GIST pathogenesis. GISTs with KIT or PDGFRA mutations also undergo secondary cytogenetic alterations that may indicate the involvement of additional genes important in tumor progression. Approximately 10-15% of adult and 85% of pediatric GISTs do not have mutations in KIT or in PDGFRA. Most mutant adult GISTs display large-scale genomic alterations, but little is known about the mutation-negative tumors. Using genome-wide DNA arrays, we investigated genomic imbalances in a set of 31 GISTs, including 10 KIT/PDGFRA mutation-negative tumors from nine adults and one pediatric case and 21 mutant tumors. Although all 21 mutant GISTs exhibited multiple copy number aberrations, notably losses, eight of the 10 KIT/PDGFRA mutation-negative GISTs exhibited few or no genomic alterations. One KIT/PDGFRA mutation-negative tumor exhibiting numerous genomic changes was found to harbor an alternate activating mutation, in the serine-threonine kinase BRAF. The only other mutation-negative GIST with significant chromosomal imbalances was a recurrent metastatic tumor found to harbor a homozygous deletion in chromosome arm 9p. Similar findings in several KIT-mutant GISTs identified a minimal overlapping region of deletion of approximately 0.28 Mbp in 9p21.3 that includes only the CDKN2A/2B genes, which encode inhibitors of cell-cycle kinases. These results suggest that GISTs without activating kinase mutations, whether pediatric or adult, generally exhibit a much lower level of cytogenetic progression than that observed in mutant GISTs.
Insights
Gastrointestinal stromal tumors (GISTs) lacking KIT or PDGFRA mutations show fewer genomic alterations. These mutation-negative GISTs generally exhibit less cytogenetic progression compared to mutated GISTs.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Gastrointestinal stromal tumors (GISTs) often have activating mutations in KIT or platelet-derived growth factor receptor (PDGFRA).
- These mutations dysregulate signaling pathways crucial for GIST development.
- A subset of GISTs, particularly pediatric cases, lack these common mutations, and their genomic landscape is less understood.
Purpose of the Study:
- To investigate genomic imbalances in GISTs, focusing on tumors without KIT or PDGFRA mutations.
- To compare the genomic alterations between mutation-negative and mutation-positive GISTs.
- To identify potential genetic drivers in mutation-negative GISTs.
Main Methods:
- Genome-wide DNA arrays were used to analyze genomic imbalances in 31 GIST samples.
- The study included 10 KIT/PDGFRA mutation-negative GISTs and 21 GISTs with known mutations.
- Mutation status and copy number aberrations were assessed.
Main Results:
- Most KIT/PDGFRA mutation-negative GISTs (8 out of 10) displayed minimal to no genomic alterations.
- One mutation-negative GIST had a BRAF mutation, and another had a homozygous deletion in 9p.
- Mutant GISTs consistently showed multiple copy number aberrations, particularly losses.
Conclusions:
- GISTs without canonical kinase mutations generally exhibit significantly less cytogenetic progression.
- The genetic underpinnings of mutation-negative GISTs may differ substantially from those with KIT/PDGFRA mutations.
- Further research into alternative pathways in mutation-negative GISTs is warranted.
