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Updated: Apr 26, 2026

In vitro Organoid Culture of Primary Mouse Colon Tumors
Published on: May 17, 2013
CDC42 inhibition suppresses progression of incipient intestinal tumors
Ryotaro Sakamori1, Shiyan Yu1, Xiao Zhang1
1Department of Biological Sciences, Rutgers University, Newark, New Jersey.
Abstract:
Mutations in the APC or β-catenin genes are well-established initiators of colorectal cancer, yet modifiers that facilitate the survival and progression of nascent tumor cells are not well defined. Using genetic and pharmacologic approaches in mouse colorectal cancer and human colorectal cancer xenograft models, we show that incipient intestinal tumor cells activate CDC42, an APC-interacting small GTPase, as a crucial step in malignant progression. In the mouse, Cdc42 ablation attenuated the tumorigenicity of mutant intestinal cells carrying single APC or β-catenin mutations. Similarly, human colorectal cancer with relatively higher levels of CDC42 activity was particularly sensitive to CDC42 blockade. Mechanistic studies suggested that Cdc42 may be activated at different levels, including at the level of transcriptional activation of the stem cell-enriched Rho family exchange factor Arhgef4. Our results indicate that early-stage mutant intestinal epithelial cells must recruit the pleiotropic functions of Cdc42 for malignant progression, suggesting its relevance as a biomarker and therapeutic target for selective colorectal cancer intervention.
Insights
Early colorectal cancer cells require CDC42 for malignant progression. Blocking CDC42 activity in nascent tumor cells shows therapeutic potential for colorectal cancer intervention.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Colorectal cancer (CRC) initiation involves APC or β-catenin mutations.
- Factors promoting early tumor cell survival and progression remain unclear.
Purpose of the Study:
- To investigate the role of CDC42 in the malignant progression of nascent intestinal tumor cells.
- To explore CDC42 as a potential biomarker and therapeutic target for colorectal cancer.
Main Methods:
- Utilized genetic and pharmacologic approaches in mouse CRC models.
- Employed human CRC xenograft models to assess CDC42 activity.
- Investigated mechanisms of CDC42 activation, including Arhgef4 transcriptional regulation.
Main Results:
- Cdc42 ablation attenuated tumorigenicity in mouse models with APC or β-catenin mutations.
- Human CRC with high CDC42 activity showed sensitivity to CDC42 blockade.
- Identified Arhgef4 as a potential upstream regulator of Cdc42 activation.
Conclusions:
- Early-stage mutant intestinal epithelial cells depend on CDC42 for malignant progression.
- CDC42 is a relevant biomarker and therapeutic target for selective colorectal cancer intervention.
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