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Real-time Imaging of Myeloid Cells Dynamics in ApcMin/+ Intestinal Tumors by Spinning Disk Confocal Microscopy
Published on: October 6, 2014
Studying the consequences of immediate loss of gene function in the intestine: APC
1Cardiff School of Biosciences, Cardiff University, Cardiff CF10 3US, Wales, UK. clarkear@cf.ac.uk
Abstract:
The use of mouse models to study neoplasia is proving particularly powerful in dissecting the mechanisms underlying disease initiation and progression. However, the majority of these models have been somewhat limited in studying the very early effects of loss of gene function, as tumour initiation relies upon either constitutive loss of gene function or spontaneous somatic loss of function. We have therefore adopted a strategy of using an inducible Cre-lox-based system to analyse the effects of loss of gene function, the use of which is reviewed here for the intestinal tumour suppressor APC (adenomatous polyposis coli). Using this approach, we have conditionally and synchronously inactivated APC in virtually all the epithelial cells of the adult murine small intestine. After 5 days following induction of Cre-mediated recombination, mice show grossly altered crypt/villus architecture. Deficiency in APC perturbs migration, alters the normal programme of differentiation and results in increased proliferation and apoptosis. Microarray analysis reveals the transcriptome to be significantly altered; reflecting both gross phenotypic changes and changes in transcriptional activation. These findings demonstrate that APC is indeed the critical determinant of cell fate in the intestinal epithelium, explaining its role as the cellular 'gatekeeper' in preventing neoplasia.
Insights
This study uses an inducible system to investigate the early effects of gene loss in mouse models of neoplasia. Conditional inactivation of the APC gene in the intestine revealed its critical role in cell fate and preventing tumor formation.
Area of Science:
- Molecular Biology
- Genetics
- Cancer Research
Background:
- Mouse models are crucial for studying neoplasia mechanisms.
- Existing models have limitations in analyzing early gene function loss effects.
- Tumor initiation often involves constitutive or spontaneous somatic gene loss.
Purpose of the Study:
- To analyze early gene function loss effects using an inducible Cre-lox system.
- To investigate the role of the intestinal tumor suppressor APC (adenomatous polyposis coli).
- To conditionally and synchronously inactivate APC in the adult murine small intestine.
Main Methods:
- Utilized an inducible Cre-lox-based system for gene inactivation.
- Conditionally inactivated the APC gene in the epithelial cells of the murine small intestine.
- Performed microarray analysis to assess transcriptome alterations.
Main Results:
- Grossly altered crypt/villus architecture observed 5 days post-induction.
- APC deficiency perturbed cell migration and differentiation.
- Increased proliferation and apoptosis, with significant transcriptome alterations.
Conclusions:
- APC is a critical determinant of cell fate in the intestinal epithelium.
- APC acts as a cellular 'gatekeeper' preventing neoplasia.
- Inducible Cre-lox systems are powerful for studying early gene function loss in disease models.
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