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Reprogramming of intestinal differentiation and intercalary regeneration in Cdx2 mutant mice
F Beck1, K Chawengsaksophak, P Waring
1Howard Florey Institute of Experimental Physiology and Medicine, University of Melbourne, Melbourne 3052, Australia. fb22@le.ac.uk
Abstract:
The homeobox gene Cdx2, a homologue of the Drosophila gene caudal, has been implicated in the control of cell differentiation in the intestinal epithelium. Recently, we showed that mice in which one allele of the Cdx2 gene had been inactivated by homologous recombination developed multiple intestinal polyp-like lesions that did not express Cdx2 and that contained areas of squamous metaplasia in the form of keratinizing stratified squamous epithelium, similar to that occurring in the mouse esophagus and forestomach. We have now examined colonic lesions from 98 Cdx2+/- mice and report that the lesions are composed of heterotopic stomach and small intestinal mucosa. We conclude that Cdx2 directs endodermal differentiation toward a caudal phenotype and that haploinsufficient levels of expression in the developing distal intestine lead to homeotic transformation to a more rostral endodermal phenotype, such as forestomach epithelium that does not express Cdx2 during normal development. Intercalary growth (epimorphic regeneration), which previously has never been described in mammals, then occurs, resulting in the ordered "filling in" of tissue types at the discontinuity between the gastric and colonic epithelia. This intercalary growth in a restricted space results in the formation of the polypoid lesions observed.
Insights
The homeobox gene Cdx2 is crucial for intestinal cell differentiation. Haploinsufficiency causes homeotic transformation and polyp formation in mice, revealing a novel regenerative growth mechanism.
Area of Science:
- Developmental Biology
- Genetics
- Gastroenterology
Background:
- The homeobox gene Cdx2 plays a key role in intestinal epithelial cell differentiation.
- Previous studies showed Cdx2+/- mice develop polyp-like lesions with squamous metaplasia.
Purpose of the Study:
- To investigate the composition of colonic lesions in Cdx2+/- mice.
- To elucidate the role of Cdx2 in endodermal differentiation and tissue regeneration.
Main Methods:
- Analysis of colonic lesions from 98 Cdx2+/- mice.
- Histological examination of heterotopic mucosa and metaplastic epithelium.
Main Results:
- Colonic lesions in Cdx2+/- mice consist of heterotopic stomach and small intestinal mucosa.
- These lesions exhibit squamous metaplasia, resembling forestomach epithelium.
- A novel form of intercalary growth (epimorphic regeneration) was observed in these lesions.
Conclusions:
- Cdx2 directs endodermal differentiation towards a caudal (intestinal) phenotype.
- Reduced Cdx2 levels lead to homeotic transformation to a rostral (forestomach) phenotype.
- Intercalary growth contributes to the formation of polypoid lesions in the absence of normal Cdx2 function.