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Am J Physiol Gastrointest Liver Physiol (October 1, 2009). doi:10.1152/ajpgi.90586.2008
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Research Article

Pdx1 Inactivation Restricted to the Intestinal Epithelium in Mice Alters Duodenal Gene Expression in Enterocytes and Enteroendocrine Cells

Chin Chen,1,* Rixun Fang,2 Corrine Davis,2 Charalambos Maravelias,2 and Eric Sibley3

1Stanford University School of Medicine 2 3Stanford University

Submitted 9 October 2008 ; revision received 23 September 2009 ; accepted in final form 29 September 2009

ABSTRACT

Null mutant mice lacking the transcription factor pancreatic and duodenal homeobox 1 (Pdx1) are apancreatic and survive only a few days after birth. The role of Pdx1 in regulating intestinal gene expression has therefore yet to be determined in viable mice with normal pancreatic development. We hypothesized that conditional inactivation of Pdx1 restricted to the intestinal epithelium would alter intestinal gene expression and cell differentiation. Pdx1flox/flox;VilCre mice with intestine-specific Pdx1 inactivation were generated by crossing a transgenic mouse strain expressing Cre recombinase driven by a mouse villin 1 gene promoter fragment, with a mutant mouse strain homozygous for loxP site-flanked Pdx1. Pdx1 protein is undetectable in all epithelial cells in the intestinal epithelium of Pdx1flox/flox;VilCre mice. Goblet cell number and mRNA abundance for mucin 3 and mucin 13 genes in the proximal small intestine are comparable between Pdx1flox/flox;VilCre and control mice. Similarly, paneth cell number and expression of paneth cell-related genes Defa1, Defcr-rs1, and Mmp7 in the proximal small intestine remain statistically unchanged by Pdx1 inactivation. Although the number of enteroendocrine cells expressing chromogranin A/B, gastric inhibitory polypeptide (Gip) or somatostatin (Sst) is unaffected in the Pdx1flox/flox;VilCre mice, mRNA abundance for Gip and Sst is significantly reduced in the proximal small intestine. Conditional Pdx1 inactivation attenuates intestinal alkaline phosphatase (IAP) activity in the duodenal epithelium, consistent with an average 91% decrease in expression of the mouse enterocyte IAP gene, alkaline phosphatase 3 (a novel Pdx1 target candidate), in the proximal small intestine following Pdx1 inactivation. We conclude that Pdx1 is necessary for patterning appropriate gene expression in enterocytes and enteroendocrine cells of the proximal small intestine.

Proximal small intestine; Anterior-posterior patterning; Tissue-specific; Conditional knockout



* Stanford University School of Medicine chinchen{at}stanford.edu







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