期刊
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES
卷 22, 期 14, 页码 -出版社
MDPI
DOI: 10.3390/ijms22147345
关键词
mega-intestine; postnatal development; crypt formation; Cd97; Klf4; Areg; individual cell-based model; contact inhibition of growth; crypt fission; stem cell fate; fate decision
资金
- Bundesministerium fur Bildung und Forschung (grant: INDRA) [BMBF 031A312]
Intestinal cylindrical growth peaks in mice a few weeks after birth and stops after weaning. Cd97/Adgre5 transgenic mice show premature intestinal differentiation, leading to activation of intestinal epithelial cell growth and suppression of maturation.
Intestinal cylindrical growth peaks in mice a few weeks after birth, simultaneously with crypt fission activity. It nearly stops after weaning and cannot be reactivated later. Transgenic mice expressing Cd97/Adgre5 in the intestinal epithelium develop a mega-intestine with normal microscopic morphology in adult mice. Here, we demonstrate premature intestinal differentiation in Cd97/Adgre5 transgenic mice at both the cellular and molecular levels until postnatal day 14. Subsequently, the growth of the intestinal epithelium becomes activated and its maturation suppressed. These changes are paralleled by postnatal regulation of growth factors and by an increased expression of secretory cell markers, suggesting growth activation of non-epithelial tissue layers as the origin of enforced tissue growth. To understand postnatal intestinal growth mechanistically, we study epithelial fate decisions during this period with the use of a 3D individual cell-based computer model. In the model, the expansion of the intestinal stem cell (SC) population, a prerequisite for crypt fission, is largely independent of the tissue growth rate and is therefore not spontaneously adaptive. Accordingly, the model suggests that, besides the growth activation of non-epithelial tissue layers, the formation of a mega-intestine requires a released growth control in the epithelium, enabling accelerated SC expansion. The similar intestinal morphology in Cd97/Adgre5 transgenic and wild type mice indicates a synchronization of tissue growth and SC expansion, likely by a crypt density-controlled contact inhibition of growth of intestinal SC proliferation. The formation of a mega-intestine with normal microscopic morphology turns out to originate in changes of autonomous and conditional specification of the intestinal cell fate induced by the activation of Cd97/Adgre5.
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