4.6 Article

Requirement of Notch activation during regeneration of the intestinal epithelia

出版社

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/ajpgi.90225.2008

关键词

intestinal epithelial cells; goblet cells; PLA2G2A; ulcerative colitis

资金

  1. Japanese Ministry of Education, Culture, Sports, Science and Technology
  2. The Japanese Ministry of Health, Labor and Welfare
  3. The Japanese Society of Gastroenterology
  4. The Foundation for Advancement of International Science
  5. Mitsukoshi Health and Welfare Foundation
  6. Japan Intractable Diseases Research Foundation

向作者/读者索取更多资源

Okamoto R, Tsuchiya K, Nemoto Y, Akiyama J, Nakamura T, Kanai T, Watanabe M. Requirement of Notch activation during regeneration of the intestinal epithelia. Am J Physiol Gastrointest Liver Physiol 296: G23-G35, 2009. First published November 20, 2008; doi:10.1152/ajpgi.90225.2008.-Notch signaling regulates cell differentiation and proliferation, contributing to the maintenance of diverse tissues including the intestinal epithelia. However, its role in tissue regeneration is less understood. Here, we show that Notch signaling is activated in a greater number of intestinal epithelial cells in the inflamed mucosa of colitis. Inhibition of Notch activation in vivo using a gamma-secretase inhibitor resulted in a severe exacerbation of the colitis attributable to the loss of the regenerative response within the epithelial layer. Activation of Notch supported epithelial regeneration by suppressing goblet cell differentiation, but it also promoted cell proliferation, as shown in in vivo and in vitro studies. By utilizing tetracycline-dependent gene expression and microarray analysis, we identified a novel group of genes that are regulated downstream of Notch1 within intestinal epithelial cells, including PLA2G2A, an antimicrobial peptide secreted by Paneth cells. Finally, we show that these functions of activated Notch1 are present in the mucosa of ulcerative colitis, mediating cell proliferation, goblet cell depletion, and ectopic expression of PLA2G2A, thereby contributing to the regeneration of the damaged epithelia. This study showed the critical involvement of Notch signaling during intestinal tissue regeneration, regulating differentiation, proliferation, and antimicrobial response of the epithelial cells. Thus Notch signaling is a key intracellular molecular pathway for the proper reconstruction of the intestinal epithelia.

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