
Publications of P. Collombat
All genres
Journal Article (17)
1.
Journal Article
21 (8), pp. 838 - 844 (2010)
Pancreatic beta-cells: From generation to regeneration. Seminars in Cell and Developmental Biology 2.
Journal Article
8 (21), pp. 3450 - 3451 (2009)
Turning on the β-cell identity in the pancreas. Cell Cycle 3.
Journal Article
334 (1), pp. 59 - 71 (2009)
Arx acts as a regional key selector gene in the ventral telencephalon mainly through its transcriptional repression activity. Developmental Biolology 4.
Journal Article
25 (8-9), pp. 763 - 766 (2009)
Pax4 transdifferentiates glucagon-secreting alpha cells to insulin-secreting beta endocrine pancreatic cells. Medecines Sciences 5.
Journal Article
138 (3), pp. 449 - 462 (2009)
The ectopic expression of Pax4 in the mouse pancreas converts progenitor cells into α and subsequently β cells. Cell 6.
Journal Article
28 (42), pp. 10674 - 10686 (2008)
Arx is a direct target of Dlx2 and thereby contributes to the tangential migration of GABAergic interneurons. The Journal of Neuroscience 7.
Journal Article
15, pp. 94 - 104 (2008)
The homeobox gene Arx is a novel positive regulator of embryonic myogenesis. Cell Death and Differentiation 8.
Journal Article
237 (1), pp. 51 - 61 (2008)
Ghrelin is a novel target of Pax4 in endocrine progenitors of the pancreas and duodenum. Developmental Dynamics 9.
Journal Article
27 (17), pp. 4786 - 4798 (2007)
Inactivation of Arx, the murine ortholog of the X-linked lissencephaly with ambiguous genitalia gene, leads to severe disorganization of the ventral telencephalon with impaired neuronal migration and differentiation. The Journal of Neuroscience 10.
Journal Article
117 (4), pp. 961 - 970 (2007)
Embryonic endocrine pancreas and mature β cells acquire α and PP cell phenotypes upon Arx misexpression. The Journal of Clinical Investigation 11.
Journal Article
123 (7), pp. 501 - 512 (2006)
Specifying pancreatic endocrine cell fates. Mechanisms of Development 12.
Journal Article
25 (6), pp. 1344 - 1352 (2006)
IA1 is NGN3-dependent and essential for differentiation of the endocrine pancreas. EMBO Journal 13.
Journal Article
286 (1), pp. 217 - 224 (2005)
Genetic determinants of pancreatic epsilon-cell development. Developmental Biology 14.
Journal Article
132 (13), pp. 2969 - 2980 (2005)
The simultaneous loss of Arx and Pax4 genes promotes a somatostatin-producing cell fate specification at the expense of the alpha- and beta-cell lineages in the mouse endocrine pancreas. Development 15.
Journal Article
23 (1), pp. 10 - 15 (2005)
In vivo and in vitro tissue-specific expression of green fluorescent protein using the cre-lox system in mouse embryonic stem cells. Stem Cells 16.
Journal Article
6, pp. 89 - 109 (2004)
New insights into endocrine pancreas morphogenesis: How to learn from development to better understand pancreatic cancers. Recent Research Developments in Cancer 17.
Journal Article
17 (20), pp. 2591 - 2603 (2003)
Opposing actions of Arx and Pax4 in endocrine pancreas development. Genes & Development Thesis - PhD (1)
18.
Thesis - PhD
Functional characterization of the role of Arx and Pax4 during the development of the endocrine pancreas. Dissertation, Université Paul Sabatier, Toulouse (2004)