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Lessons from genetically engineered animal models. VII. Apoptosis in intestinal epithelium: lessons from transgenic
1Department of Medicine, University of Liverpool, Liverpool L69 3GA, United Kingdom. alastair.watson@liv.ac.uk
Abstract:
Apoptosis plays an important role in homeostasis of intestinal epithelia and is also a stress response to toxic stimuli. Transgenic and knockout mice have provided insights into the regulation of intestinal epithelial apoptosis that could not have been obtained by cell culture techniques. Two broad types of apoptosis have been characterized: spontaneous apoptosis, which occurs continuously at low levels in the normal, unstressed intestine, and stress-induced apoptosis, which occurs after genotoxic insult such as exposure to gamma radiation or DNA-damaging drugs. Spontaneous apoptosis occurs at the base of the crypt at or near the position of epithelial stem cells. Knockout studies have shown that spontaneous apoptosis is independent of p53 and Bax in both small and large intestine, whereas Bcl2 only regulates spontaneous apoptosis in the colon. Little is known about the regulation of the specialized form of cell death at the villus tip. In contrast, knockout studies have demonstrated that both p53 and Bcl2 are important regulators of stress-induced apoptosis but that there are significant differences between early and late time points. Bax plays only a minor role in the regulation of stress-induced apoptosis. The cumulative effect of stress-induced apoptosis on tissue architecture is not straightforward, and cell cycle arrest also plays a critical role. Nevertheless, p53 is an important determinant of the histopathological damage induced by 5-fluorouracil in murine intestinal epithelium. These studies have important implications for the development of more effective treatment for inflammatory bowel disease and cancer.
Insights
Studies in mice reveal distinct regulation of spontaneous and stress-induced apoptosis in intestinal epithelial cells. Understanding these pathways is crucial for treating inflammatory bowel disease and cancer.
Area of Science:
- Gastroenterology
- Cell Biology
- Molecular Biology
Background:
- Apoptosis is vital for intestinal epithelial homeostasis and stress response.
- Transgenic and knockout mouse models offer unique insights into apoptosis regulation.
- Two main types of apoptosis exist: spontaneous and stress-induced.
Purpose of the Study:
- To investigate the regulatory mechanisms of spontaneous and stress-induced apoptosis in the intestinal epithelium.
- To elucidate the roles of p53, Bax, and Bcl2 in different types of intestinal apoptosis.
- To understand the implications for inflammatory bowel disease and cancer treatment.
Main Methods:
- Utilized transgenic and knockout mouse models.
- Analyzed spontaneous and stress-induced apoptosis in small and large intestines.
- Examined the roles of p53, Bax, and Bcl2 in apoptosis regulation.
Main Results:
- Spontaneous apoptosis is p53 and Bax-independent but Bcl2-regulated in the colon.
- Stress-induced apoptosis is regulated by p53 and Bcl2, with time-dependent differences.
- Bax plays a minor role in stress-induced apoptosis; p53 influences histopathological damage.
Conclusions:
- Intestinal epithelial apoptosis exhibits distinct regulatory pathways for spontaneous and stress-induced forms.
- p53 is a key determinant of damage from genotoxic stress in the intestinal epithelium.
- Findings have implications for developing novel therapies for gastrointestinal diseases and cancers.
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