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Published on: March 6, 2015
In vitro differentiation of Runx3-/- p53-/- gastric epithelial cells into intestinal type cells
Hiroshi Fukamachi1, Ayako Mimata, Issei Tanaka
1Department of Molecular Oncology, Graduate School of Medicine and Dentistry, Tokyo Medical and Dental University, 1-5-45 Yushima, Bunkyo-ku, Tokyo 113-8519, Japan. hfukama.monc@tmd.ac.jp
Abstract:
We have reported that a lack of RUNX3 function is causally associated with gastric carcinogenesis. We have also presented evidence that loss of Runx3 may be related to the genesis of intestinal metaplasia because expression of RUNX3 is reduced in some intestinal metaplasias, and some Runx3(-/-)p53(-/-) gastric epithelial cells differentiate into intestinal type cells in vivo. Recently several reports have indicated that blood cells play important roles in the gastric carcinogenesis. In the present study, we therefore examined whether Runx3(-/-)p53(-/-) gastric epithelial cells differentiate autonomously into intestinal type cells, or whether the presence of other cells is necessary for the differentiation in vitro. When Runx3(-/-)p53(-/-) gastric epithelial cells were cultured with collagen gels, they did not exhibit any morphogenesis and differentiated poorly. When cultured with fetal mouse gastric mesenchymes, the cells formed glandular structures and differentiated into surface mucous cells, but differentiation of intestinal type cells was never observed. When cultured with Matrigel, the cells formed glandular structures, and some cells differentiated into intestinal type cells in vitro. Reverse transcription-polymerase chain reaction analysis showed that the cells expressed stomach-specific genes, and their levels decreased gradually during the culture. The cells expressed some intestine-specific genes weakly at the start of culture, and their levels were increased with time in culture. We therefore conclude that Runx3(-/-)p53(-/-) gastric epithelial cells differentiate into intestinal type cells in combination with Matrigel in the absence of other cell types. Extracellular matrix, not blood cells, may play a role in the genesis of intestinal metaplasia.
Insights
Loss of RUNX3 function is linked to gastric cancer. In vitro, Runx3(-/-)p53(-/-) gastric cells differentiate into intestinal types when cultured with Matrigel, suggesting extracellular matrix involvement in metaplasia.
Area of Science:
- Gastroenterology
- Cell Biology
- Cancer Research
Background:
- RUNX3 deficiency is linked to gastric carcinogenesis.
- Loss of RUNX3 expression occurs in some intestinal metaplasias.
- Gastric carcinogenesis may involve blood cells.
Purpose of the Study:
- To investigate if Runx3(-/-)p53(-/-) gastric epithelial cells differentiate autonomously into intestinal cells in vitro.
- To determine if other cell types are necessary for this differentiation.
Main Methods:
- Culture of Runx3(-/-)p53(-/-) gastric epithelial cells with collagen gels, fetal mouse gastric mesenchymes, or Matrigel.
- Assessment of cell differentiation and morphogenesis.
- Reverse transcription-polymerase chain reaction (RT-PCR) analysis of gene expression.
Main Results:
- Cells cultured with collagen gels or mesenchymes showed poor or limited differentiation.
- Cells cultured with Matrigel formed glandular structures and differentiated into intestinal type cells.
- RT-PCR revealed decreased stomach-specific gene expression and increased intestine-specific gene expression over time in Matrigel cultures.
Conclusions:
- Runx3(-/-)p53(-/-) gastric epithelial cells can differentiate into intestinal type cells in vitro when combined with Matrigel, independent of other cell types.
- Extracellular matrix, specifically Matrigel, plays a role in the genesis of intestinal metaplasia.
- Blood cells are unlikely to be the primary factor in intestinal metaplasia development.

