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Updated: Jan 3, 2026

Molecular and Immunologic Techniques in a Genetically Engineered Mouse Model of Gastrointestinal Stromal Tumor
Published on: May 2, 2022
Coordinated targeting of CK2 and KIT in gastrointestinal stromal tumours
Mengyuan Huang1, Wenyu Yang1, Jiaqing Zhu1
1Zhejiang Provincial Key Laboratory of Silkworm Bioreactor and Biomedicine, College of Life Sciences and Medicine, Zhejiang Sci-Tech University, Hangzhou, China.
Background:
Most gastrointestinal stromal tumours (GIST) are driven by activating oncogenic mutations of KIT/PDGFRA, which provide a compelling therapeutic target. Our previous studies showed that CDC37, regulated by casein kinase 2 (CK2), is a crucial HSP90 cofactor for KIT oncogenic function and a promising and more selective therapeutic target in GIST.
Methods:
Biologic mechanisms of CK2-mediated CDC37 regulation were assessed in GISTs by immunoblotting, immunoprecipitations, knockdown and inactivation assays. The effects of a combination of KIT and CK2 inhibition were assessed by immunoblotting, cell viability, colony growth, cell cycle analysis, apoptosis, migration and invasiveness.
Results:
CK2 overexpression was demonstrated by immunoblotting in GIST cell lines and patient biopsies. Treatment with a specific CK2 inhibitor, CX4945, leads to CDC37 dephosphorylation and inhibits KIT signalling in imatinib-sensitive and in imatinib-resistant GIST cell lines. Immunoprecipitation demonstrated that CK2 inhibition blocks KIT:HSP90:CDC37 interaction in GIST cells. Coordinated inhibition of CK2 and KIT by CX4945 (or CK2 shRNA) and imatinib, respectively, leads to increased apoptosis, anti-proliferative effects and cell cycle arrest and decreased p-AKT and p-S6 expression, migration and invasiveness in all GIST cell lines compared with either intervention alone, indicating additive effects of inhibiting these two important regulators of GIST biology.
Conclusion:
Our findings suggest that combinatorial inhibition of CK2 and KIT warrants evaluation as a novel therapeutic strategy in GIST, especially in imatinib-resistant GIST.
Insights
Combining casein kinase 2 (CK2) and KIT inhibition shows promise for gastrointestinal stromal tumors (GIST). This dual approach enhances apoptosis and reduces proliferation, offering a potential new therapy, particularly for imatinib-resistant GIST.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Most gastrointestinal stromal tumors (GIST) are driven by KIT/PDGFRA mutations, making them therapeutic targets.
- CDC37, regulated by casein kinase 2 (CK2), is a key cofactor for oncogenic KIT function in GIST.
Purpose of the Study:
- To investigate the biologic mechanisms of CK2-mediated CDC37 regulation in GIST.
- To assess the effects of combined KIT and CK2 inhibition on GIST cell behavior.
Main Methods:
- Immunoblotting, immunoprecipitations, and knockdown assays were used to study CK2-mediated CDC37 regulation.
- GIST cell lines were treated with CK2 inhibitor (CX4945) and/or KIT inhibitor (imatinib) to assess effects on viability, proliferation, cell cycle, apoptosis, migration, and invasiveness.
Main Results:
- CK2 overexpression was observed in GIST cell lines and patient biopsies.
- CK2 inhibition with CX4945 led to CDC37 dephosphorylation and inhibited KIT signaling in both imatinib-sensitive and resistant GIST cells.
- Combined inhibition of CK2 and KIT demonstrated additive anti-proliferative and pro-apoptotic effects, reduced migration and invasiveness, and decreased p-AKT and p-S6 expression.
Conclusions:
- Combinatorial inhibition of CK2 and KIT is a potential novel therapeutic strategy for GIST.
- This approach is particularly promising for imatinib-resistant GIST cases.
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