Function and regulation of zebrafish nkx2.2a during development of pancreatic islet and ducts
In the mouse Nkx2.2 is expressed in the entire pancreatic anlage. Nevertheless, absence of Nkx2.2 only perturbs the development of endocrine cell types, notably beta-cells which are completely absent. In order to test the possibility that Nkx2.2 might fulfil additional functions during pancreas deve...
Gespeichert in:
Veröffentlicht in: | Developmental biology 2007-04, Vol.304 (2), p.875-890 |
---|---|
Hauptverfasser: | , , , , |
Format: | Artikel |
Sprache: | eng |
Schlagworte: | |
Online-Zugang: | Volltext |
Tags: |
Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
|
Zusammenfassung: | In the mouse
Nkx2.2 is expressed in the entire pancreatic anlage. Nevertheless, absence of Nkx2.2 only perturbs the development of endocrine cell types, notably beta-cells which are completely absent. In order to test the possibility that
Nkx2.2 might fulfil additional functions during pancreas development we analysed its zebrafish homologue
nkx2.2a using gene targeting and GFP-transgenic fish lines. Our results suggest similar roles for
nkx2.2a and
Nkx2.2 during the development of the endocrine pancreas. Morpholino-based knock-down of
nkx2.2a leads to a reduction of alpha- and beta-cell number and an increase of
ghrelin-producing cells but, as in mice, does not affect delta-cells. Moreover, like in the mouse, two spatially distinct promoters regulate expression of
nkx2.2a in precursors and differentiated islet cells. In addition we found that in zebrafish
nkx2.2a is also expressed in the anterior pancreatic bud and, later, in the differentiated pancreatic ducts. A
nkx2.2a-transgenic line in which pancreatic GFP expression is restricted to the pancreatic ducts revealed that single GFP-positive cells leave the anterior pancreatic bud and move towards the islet where they form intercellular connections between each other. Subsequently, these cells generate the branched network of the larval pancreatic ducts. Morpholinos that block nkx2.2a function also lead to the absence of the pancreatic ducts. We observed the same phenotype in
ptf1a-morphants that are additionally characterized by a reduced number of
nkx2.2a-positive duct precursors. Whereas important details of the molecular program leading to the differentiation of endocrine cell types are conserved between mammals and zebrafish, our results reveal a new function for
nkx2.2a in the development of the pancreatic ducts. |
---|---|
ISSN: | 0012-1606 1095-564X |
DOI: | 10.1016/j.ydbio.2007.01.024 |