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Published on: October 6, 2014
Sox9 induction, ectopic Paneth cells, and mitotic spindle axis defects in mouse colon adenomatous epithelium arising
Ying Feng1, Kazuhiro Sentani, Alexandra Wiese
1Department of Internal Medicine, University of Michigan Medical School, Ann Arbor, Michigan 48109, USA.
Abstract:
We generated transgenic mice in which human CDX2 gene elements control expression of a tamoxifen-regulated Cre protein (CDX2P-CreER(T2)) to allow for inducible gene targeting in intestinal epithelium. After tamoxifen dosing of CDX2P-CreER(T2) mice, Cre activity was detected in the distal ileal, cecal, colonic, and rectal epithelium, with selected crypt base, transit amplifying, and surface cells all capable of activating Cre function. Four weeks after tamoxifen dosing of CDX2P-CreER(T2) mice carrying a Cre-activated fluorescent reporter, single crypts were uniformly fluorescence positive or negative, reflecting Cre activation in crypt stem cells. Biallelic inactivation of the Apc tumor suppressor gene via the CDX2P-CreER(T2) transgene in colon epithelium led to acute alterations in cell proliferation, apoptosis, and morphology, along with mitotic spindle misorientation, β-catenin nuclear localization, and induction of the intestinal stem cell markers Lgr5 and Musashi-1 and the Sox9 transcription factor. Normal mouse colon epithelium lacks Paneth cells, a key small intestine niche cell type, and Paneth cell differentiation is dependent on Sox9 function. In Apc-deficient colon epithelium, ectopic Paneth-like cells were seen outside the crypt base, such as new crypt budding sites. Our data indicate Apc inactivation via CDX2P-CreER(T2) targeting in mouse colon epithelium is sufficient to induce adenomatous changes and the generation of Paneth-like cells from neoplastic progenitors, with potentially significant roles in colon adenoma development and progression.
Insights
Researchers developed a new mouse model for inducible gene targeting in the intestinal epithelium. This model allows for precise study of Apc gene inactivation, revealing its role in colon adenoma development and Paneth cell generation.
Area of Science:
- Gastroenterology and Hepatology
- Molecular Biology
- Cancer Research
Background:
- The Apc gene is crucial in intestinal homeostasis and tumor suppression.
- Inducible genetic models are essential for studying gene function in specific tissues like the colon.
Purpose of the Study:
- To develop a novel transgenic mouse model for inducible gene targeting in the intestinal epithelium.
- To investigate the consequences of Apc tumor suppressor gene inactivation in mouse colon epithelium.
Main Methods:
- Generation of CDX2P-CreER(T2) transgenic mice for tamoxifen-inducible Cre recombination.
- Induction of Cre activity in intestinal epithelial cells and assessment of reporter gene expression.
- Analysis of cellular and molecular changes following Apc gene inactivation in colon epithelium.
Main Results:
- Cre activity was observed in various intestinal epithelial cell types, including stem cells.
- Apc inactivation led to rapid changes in cell proliferation, apoptosis, and morphology.
- Ectopic Paneth-like cells were generated in Apc-deficient colon epithelium, dependent on Sox9.
- Induction of intestinal stem cell markers (Lgr5, Musashi-1) and Sox9 was observed.
Conclusions:
- The CDX2P-CreER(T2) mouse model enables precise study of gene function in the intestinal epithelium.
- Apc inactivation in colon epithelium is sufficient to induce adenomatous changes and Paneth-like cell generation.
- These findings highlight the role of Apc and Sox9 in colon adenoma development and stem cell differentiation.
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