Insulin direct pancreatic progenitor cell differentiation via Pdx1 regulation

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2014-04-11
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American English
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Office of the Vice Chancellor for Research
Abstract

Differentiation of early foregut endoderm into pancreatic endocrine and exocrine cells depends on a sequence of gene expression directed by various signals secreted from nearby tissue. Prior studies have shown that the pancreas is derived from Pdx1+ progenitor cells; however Pdx1 is turned off in pancreatic exocrine cells and α cells while maintained in β cells. Here, using zebrafish genetic knockdown, we showed that insulin secreted by early β cells can repress Pdx1 expression in pancreatic progenitor cells allowing them to differentiate to different pancreatic cell types. Knockdown of insulin gene severely impairs exocrine pancreas development. My results further demonstrate that inhibition of insulin signaling can induce pre-differentiation of Pdx1+ progenitor cells to β cells and Pdx1+ α cells. These Pdx1+ α cells can transdifferentiate to β cells following β cell ablation. Overall, these data represent the first in vivo evidence of local insulin signaling on pancreas development via regulation of Pdx1 expression.

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Ye, L., Roberson, M., Anderson, R.M. (2014, April 11). Insulin direct pancreatic progenitor cell differentiation via Pdx1 regulation. Poster session presented at IUPUI Research Day 2014, Indianapolis, Indiana.
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