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Published on: October 30, 2013
Expression of Pla2g2a prevents carcinogenesis in Muc2-deficient mice
R J A Fijneman1, J R Peham, M A van de Wiel
1Department of Pathology, VU University Medical Centre, Amsterdam, The Netherlands.
Abstract:
Goblet cell depletion and down-regulation of MUC2 expression are observed in a significant percentage of human non-mucinous colorectal adenocarcinomas. Direct evidence for the role of MUC2 in gastrointestinal tumor formation was demonstrated by a knockout of Muc2 in mice that resulted in the development of adenocarcinomas in the small and large intestine. The secretory phospholipase Pla2g2a is a protein that confers resistance to Apc(Min/+)-induced intestinal tumorigenesis. Like Muc2, in the large intestine Pla2g2a is exclusively expressed by the goblet cells and Pla2g2a's tumor resistance is also strongest in the large intestine. Possible genetic interactions between Muc2 and Pla2g2a were examined by creating C57BL/6-Muc2(-/-)Pla2g2a transgenic mice. Expression of a Pla2g2a transgene reduced tumorigenesis in the large intestine by 90% in male Muc2(-/-) mice and by nearly 100% in female Muc2(-/-) mice. Expression of Pla2g2a also inhibited tumor progression. Microarray gene expression studies revealed Pla2g2a target genes that modulate intestinal energy metabolism, differentiation, inflammation, immune responses and proliferation. Overall, results of the present study demonstrate an Apc-independent role for Pla2g2a in tumor resistance and indicate that Pla2g2a plays an important role, along with Muc2, in protection of the intestinal mucosa.
Insights
Muc2 protein deficiency increases intestinal tumor risk. Secretory phospholipase Pla2g2a significantly reduces tumor development and progression, highlighting its protective role in the intestinal mucosa.
Area of Science:
- Gastroenterology
- Oncology
- Molecular Biology
Background:
- Goblet cell depletion and reduced MUC2 expression are common in colorectal adenocarcinomas.
- MUC2 deficiency in mice leads to intestinal adenocarcinoma development.
- Secretory phospholipase Pla2g2a (Pla2g2a) confers resistance to intestinal tumorigenesis.
Purpose of the Study:
- To investigate the genetic interaction between MUC2 and Pla2g2a in intestinal tumor formation.
- To determine the role of Pla2g2a in MUC2-deficient intestinal tumorigenesis.
- To identify molecular mechanisms underlying Pla2g2a's tumor-protective effects.
Main Methods:
- Generation of C57BL/6-Muc2(-/-)Pla2g2a transgenic mice.
- Assessment of tumor development and progression in these mice.
- Microarray analysis to identify Pla2g2a target genes.
Main Results:
- Pla2g2a transgene expression dramatically reduced large intestine tumorigenesis in Muc2(-/-) mice (90% in males, ~100% in females).
- Pla2g2a expression inhibited tumor progression.
- Microarray data revealed Pla2g2a regulates genes involved in metabolism, differentiation, inflammation, immunity, and proliferation.
Conclusions:
- Pla2g2a exhibits an Apc-independent role in tumor resistance.
- Pla2g2a, alongside MUC2, is crucial for intestinal mucosal protection.
- Pla2g2a represents a potential therapeutic target for intestinal cancers.
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