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Updated: Jul 6, 2026

Real-time Imaging of Myeloid Cells Dynamics in ApcMin/+ Intestinal Tumors by Spinning Disk Confocal Microscopy
Published on: October 6, 2014
Loss of Rassf1a cooperates with Apc(Min) to accelerate intestinal tumourigenesis
L van der Weyden1, M J Arends, O M Dovey
1Wellcome Trust Sanger Institute, Wellcome Trust Genome Campus, Cambridge, UK. lvdw@sanger.ac.uk
Abstract:
Promoter methylation of the RAS-association domain family 1, isoform A gene (RASSF1A) is one of the most frequent events found in human tumours. In this study we set out to test the hypothesis that loss of Rassf1a can cooperate with inactivation of the adenomatous polyposis coli (Apc) gene to accelerate intestinal tumourigenesis using the Apc-Min (Apc(Min/+)) mouse model, as mutational or deletional inactivation of APC is a frequent early event in the genesis of intestinal cancer. Further, loss of RASSF1A has also been reported to occur in premalignant adenomas of the bowel. RASSF1A has been implicated in an array of pivotal cellular processes, including regulation of the cell cycle, apoptosis, microtubule stability and most recently in the beta-catenin signalling pathway. By interbreeding isoform specific Rassf1a knockout mice with Apc(+/Min) mice, we showed that loss of Rassf1a results in a significant increase in adenomas of the small intestine and accelerated intestinal tumourigenesis leading to the earlier death of adenocarcinoma-bearing mice and decreased overall survival. Comparative genomic hybridization of adenomas from Rassf1a(-/-); Apc(+/Min) mice revealed no evidence of aneuploidy or gross chromosomal instability (no difference to adenomas from Rassf1a(+/+); Apc(+/Min) mice). Immunohistochemical analysis of adenomas revealed increased nuclear beta-catenin accumulation in adenomas from Rassf1a(-/-); Apc(+/Min) mice, compared to those from Rassf1a(+/+); Apc(+/Min) mice, but no differences in proliferation marker (Ki67) staining patterns. Collectively these data demonstrate cooperation between inactivation of Rassf1a and Apc resulting in accelerated intestinal tumourigenesis, with adenomas showing increased nuclear accumulation of beta-catenin, supporting a mechanistic link via loss of the known interaction of Rassf1 with beta-TrCP that usually mediates degradation of beta-catenin.
Insights
Loss of Rassf1a accelerates intestinal tumor development in mice with Apc mutations. This study shows Rassf1a inactivation cooperates with Apc inactivation, increasing adenomas and decreasing survival.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Promoter methylation of RAS-association domain family 1, isoform A (RASSF1A) is a common event in human tumors.
- Adenomatous polyposis coli (APC) gene inactivation is an early event in intestinal cancer genesis.
- RASSF1A loss occurs in premalignant bowel adenomas and is implicated in cell cycle, apoptosis, and beta-catenin signaling.
Purpose of the Study:
- To test if Rassf1a loss cooperates with Apc inactivation to accelerate intestinal tumorigenesis.
- To investigate the mechanistic link between Rassf1a, Apc, and beta-catenin signaling in intestinal cancer.
Main Methods:
- Interbreeding isoform-specific Rassf1a knockout mice with Apc(+/Min) mice.
- Comparative genomic hybridization (CGH) of adenomas.
- Immunohistochemical analysis for beta-catenin and Ki67.
Main Results:
- Loss of Rassf1a significantly increased small intestinal adenomas and accelerated tumor progression.
- Mice lacking Rassf1a showed earlier death from adenocarcinoma and decreased overall survival.
- Increased nuclear beta-catenin accumulation was observed in adenomas from Rassf1a(-/-); Apc(+/Min) mice, without changes in proliferation or chromosomal instability.
Conclusions:
- Rassf1a inactivation cooperates with Apc inactivation to promote intestinal tumorigenesis.
- The mechanism involves increased beta-catenin accumulation, likely due to disrupted Rassf1-beta-TrCP interaction.
- These findings highlight RASSF1A as a potential tumor suppressor in intestinal cancer.
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