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Analysis of MPygo2 Mutant Mice Suggests a Requirement for Mesenchymal Wnt Signaling in Pancreatic Growth and Differentiation

Overview
Journal Dev Biol
Publisher Elsevier
Date 2008 May 3
PMID 18452912
Citations 14
Authors
Affiliations
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Abstract

Pygopus has recently been identified in Drosophila as an essential component of the nuclear complex required for canonical Wnt signaling. Here, we have investigated the role of the mammalian pygopus ortholog, mPygo2, in pancreas development. We show that a null mutation of mPygo2 in mice causes pancreas hypoplasia due to decreased progenitor cell proliferation after embryonic day (e) 12.5. During the same time window, mPygo2-deficient embryos begin to display a reduction in endocrine progenitors and consequently a decrease in islet endocrine cell mass. Consistent with its function after e12.5, late-developing endocrine cell types, such as beta, delta and PP cells, are specifically reduced, while the earlier-forming alpha cells develop normally. We find canonical Wnt signaling to be predominantly active in the mesenchyme at the time when mPygo2 is required and demonstrate the dependence of Wnt signal transduction on mPygo2. Furthermore, conditional deletion of mPygo2(flox) allele in the pancreatic epithelium does not phenocopy the defects in mPygo2-null mutants. Since mPygo2 is expressed in the pancreatic mesenchyme and the role of the mesenchyme in epithelial progenitor cell expansion is well documented, our findings suggest an indirect role for mPygo2 in epithelial growth and differentiation through regulation of mesenchymal signals. Together, our data suggest a previously unappreciated role for mesenchymal Wnt signaling in regulating pancreatic organ growth and cell differentiation.

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References
1.
Miettinen P, Huotari M, Koivisto T, Ustinov J, Palgi J, Rasilainen S . Impaired migration and delayed differentiation of pancreatic islet cells in mice lacking EGF-receptors. Development. 2000; 127(12):2617-27. DOI: 10.1242/dev.127.12.2617. View

2.
Mombaerts P, Wang F, Dulac C, CHAO S, Nemes A, Mendelsohn M . Visualizing an olfactory sensory map. Cell. 1996; 87(4):675-86. DOI: 10.1016/s0092-8674(00)81387-2. View

3.
Li Z, Manna P, Kobayashi H, Spilde T, Bhatia A, Preuett B . Multifaceted pancreatic mesenchymal control of epithelial lineage selection. Dev Biol. 2004; 269(1):252-63. DOI: 10.1016/j.ydbio.2004.01.043. View

4.
Johansson K, Dursun U, Jordan N, Gu G, Beermann F, Gradwohl G . Temporal control of neurogenin3 activity in pancreas progenitors reveals competence windows for the generation of different endocrine cell types. Dev Cell. 2007; 12(3):457-65. DOI: 10.1016/j.devcel.2007.02.010. View

5.
Kioussi C, Shih H, Loflin J, Gross M . Prediction of active nodes in the transcriptional network of neural tube patterning. Proc Natl Acad Sci U S A. 2006; 103(49):18621-6. PMC: 1693712. DOI: 10.1073/pnas.0609055103. View